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Frank Mccormick - One of the best experts on this subject based on the ideXlab platform.

  • abstract 5520 oncogenic rtk signaling inhibits spred1 nf1 to sustain constitutive ras mapk signaling
    Cancer Research, 2018
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Pau Castel, Jillian M Silva, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following growth factor stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Spred1 and NF1 loss-of-function mutations occur across multiple cancer types including non-small cell lung Carcinoma, glioblastoma, melanoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that oncogenic RTK signaling leads to phosphorylation of Spred1(S105) in the EVH domain, which disrupts Spred1-NF1 binding and function. Phosphomimetic Spred1 is unable to suppress Ras-GTP following growth factor stimulation and cancer cell proliferation. The Spred1(S105) kinase is likely to be a CDK based on in vitro kinase and in vivo cell line assays. Our findings provide one potential mechanism by which oncogenic RTK signaling disrupts negative feedback to sustain constitutive Ras signaling. Furthermore, this work may elucidate a novel therapeutic target for restoring NF1-mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Pau Castel, Jillian Silva, Jacqueline Galeas, Kathy Li, Anatoly Urisman, Frank McCormick. Oncogenic RTK signaling inhibits Spred1/NF1 to sustain constitutive Ras/MAPK signaling [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2018; 2018 Apr 14-18; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2018;78(13 Suppl):Abstract nr 5520.

  • abstract 1370 egfr mediated spred1 phosphorylation inhibits nf1 to sustain constitutive ras mapk signaling
    Cancer Research, 2017
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Marena I Trinidad, Jillian M Silva, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following growth factor stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Spred1 and NF1 loss-of-function mutations occur across multiple cancer types including non-small cell lung Carcinoma, glioblastoma, melanoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that EGFR signaling disrupts Spred1-NF1 binding. Mass spectrometry was performed on cells overexpressing EGFRL858R to identify potential phosphorylation sites on Spred1 and NF1 that could disrupt Spred1-NF1 binding by steric hindrance. A serine phosphorylation site on Spred1 was identified in which a phosphomimetic and phosphodeficient mutant decreased or increased Spred1-NF1 binding, respectively. Phosphomimetic Spred1 is unable to suppress Ras-GTP following EGF stimulation. Therefore, phosphorylation of Spred1 at this site by a serine kinase downstream of EGFR may disrupt Spred1-NF1 binding. To identify the Spred1 kinase we are performing an in vitro kinase assay and an unbiased CRISPRa screen. Our findings provide one potential mechanism by which EGFR signaling disrupts negative feedback to sustain constitutive Ras signaling. Furthermore, this work may elucidate a novel therapeutic target for restoring NF1-mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Jillian M. Silva, Jacqueline Galeas, Marena I. Trinidad, Anatoly Urisman, Frank McCormick. EGFR-mediated Spred1 phosphorylation inhibits NF1 to sustain constitutive Ras/MAPK signaling [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 1370. doi:10.1158/1538-7445.AM2017-1370

  • abstract 1874 oncogenic egfr signaling inhibits the spred1 nf1 interaction to sustain constitutive ras signaling
    Cancer Research, 2016
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Marena I Trinidad, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following mitogen stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Loss-of-function Spred1 and NF1 mutations occur across multiple cancer types including melanoma, non-small cell lung Carcinoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that oncogenic EGFR signaling disrupts Spred1-NF1 binding. Mass spectrometry was performed on cells overexpressing EGFRL858R to identify potential phosphorylation sites on Spred1 and NF1 that could disrupt Spred1-NF1 binding by steric hindrance. A serine phosphorylation site on Spred1 was identified in which a phosphomimetic and phosphodeficient mutant decreased or increased Spred1-NF1 binding, respectively. Therefore, phosphorylation of Spred1 at this site by a serine kinase downstream of oncogenic EGFR may disrupt Spred1-NF1 binding. Our findings provide one potential mechanism by which oncogenic EGFR signaling disrupts negative feedback to allow for constitutive Ras signaling. Furthermore, this work may elucidate a novel kinase therapeutic target for restoring NF1 mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Jacqueline Galeas, Marena I. Trinidad, Anatoly Urisman, Frank McCormick. Oncogenic EGFR signaling inhibits the Spred1-NF1 interaction to sustain constitutive Ras signaling. [abstract]. In: Proceedings of the 107th Annual Meeting of the American Association for Cancer Research; 2016 Apr 16-20; New Orleans, LA. Philadelphia (PA): AACR; Cancer Res 2016;76(14 Suppl):Abstract nr 1874.

Evan Markegard - One of the best experts on this subject based on the ideXlab platform.

  • abstract 5520 oncogenic rtk signaling inhibits spred1 nf1 to sustain constitutive ras mapk signaling
    Cancer Research, 2018
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Pau Castel, Jillian M Silva, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following growth factor stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Spred1 and NF1 loss-of-function mutations occur across multiple cancer types including non-small cell lung Carcinoma, glioblastoma, melanoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that oncogenic RTK signaling leads to phosphorylation of Spred1(S105) in the EVH domain, which disrupts Spred1-NF1 binding and function. Phosphomimetic Spred1 is unable to suppress Ras-GTP following growth factor stimulation and cancer cell proliferation. The Spred1(S105) kinase is likely to be a CDK based on in vitro kinase and in vivo cell line assays. Our findings provide one potential mechanism by which oncogenic RTK signaling disrupts negative feedback to sustain constitutive Ras signaling. Furthermore, this work may elucidate a novel therapeutic target for restoring NF1-mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Pau Castel, Jillian Silva, Jacqueline Galeas, Kathy Li, Anatoly Urisman, Frank McCormick. Oncogenic RTK signaling inhibits Spred1/NF1 to sustain constitutive Ras/MAPK signaling [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2018; 2018 Apr 14-18; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2018;78(13 Suppl):Abstract nr 5520.

  • abstract 1370 egfr mediated spred1 phosphorylation inhibits nf1 to sustain constitutive ras mapk signaling
    Cancer Research, 2017
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Marena I Trinidad, Jillian M Silva, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following growth factor stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Spred1 and NF1 loss-of-function mutations occur across multiple cancer types including non-small cell lung Carcinoma, glioblastoma, melanoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that EGFR signaling disrupts Spred1-NF1 binding. Mass spectrometry was performed on cells overexpressing EGFRL858R to identify potential phosphorylation sites on Spred1 and NF1 that could disrupt Spred1-NF1 binding by steric hindrance. A serine phosphorylation site on Spred1 was identified in which a phosphomimetic and phosphodeficient mutant decreased or increased Spred1-NF1 binding, respectively. Phosphomimetic Spred1 is unable to suppress Ras-GTP following EGF stimulation. Therefore, phosphorylation of Spred1 at this site by a serine kinase downstream of EGFR may disrupt Spred1-NF1 binding. To identify the Spred1 kinase we are performing an in vitro kinase assay and an unbiased CRISPRa screen. Our findings provide one potential mechanism by which EGFR signaling disrupts negative feedback to sustain constitutive Ras signaling. Furthermore, this work may elucidate a novel therapeutic target for restoring NF1-mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Jillian M. Silva, Jacqueline Galeas, Marena I. Trinidad, Anatoly Urisman, Frank McCormick. EGFR-mediated Spred1 phosphorylation inhibits NF1 to sustain constitutive Ras/MAPK signaling [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 1370. doi:10.1158/1538-7445.AM2017-1370

  • abstract 1874 oncogenic egfr signaling inhibits the spred1 nf1 interaction to sustain constitutive ras signaling
    Cancer Research, 2016
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Marena I Trinidad, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following mitogen stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Loss-of-function Spred1 and NF1 mutations occur across multiple cancer types including melanoma, non-small cell lung Carcinoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that oncogenic EGFR signaling disrupts Spred1-NF1 binding. Mass spectrometry was performed on cells overexpressing EGFRL858R to identify potential phosphorylation sites on Spred1 and NF1 that could disrupt Spred1-NF1 binding by steric hindrance. A serine phosphorylation site on Spred1 was identified in which a phosphomimetic and phosphodeficient mutant decreased or increased Spred1-NF1 binding, respectively. Therefore, phosphorylation of Spred1 at this site by a serine kinase downstream of oncogenic EGFR may disrupt Spred1-NF1 binding. Our findings provide one potential mechanism by which oncogenic EGFR signaling disrupts negative feedback to allow for constitutive Ras signaling. Furthermore, this work may elucidate a novel kinase therapeutic target for restoring NF1 mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Jacqueline Galeas, Marena I. Trinidad, Anatoly Urisman, Frank McCormick. Oncogenic EGFR signaling inhibits the Spred1-NF1 interaction to sustain constitutive Ras signaling. [abstract]. In: Proceedings of the 107th Annual Meeting of the American Association for Cancer Research; 2016 Apr 16-20; New Orleans, LA. Philadelphia (PA): AACR; Cancer Res 2016;76(14 Suppl):Abstract nr 1874.

Peter H Vollmers - One of the best experts on this subject based on the ideXlab platform.

  • regulation of the new coexpressed cd55 decay accelerating factor receptor on Stomach Carcinoma cells involved in antibody sc 1 induced apoptosis
    Laboratory Investigation, 2001
    Co-Authors: Frank Hensel, Ralph Hermann, Stephanie Brandlein, Veit Krenn, B Schmausser, Steffen Geis, Hans Konrad Mullerhermelink, Peter H Vollmers
    Abstract:

    The human monoclonal antibody SC-1 was isolated from a patient with a diffuse-type adenoCarcinoma of the Stomach using somatic cell hybridization. The immunoglobulin (Ig)M antibody reacts specifically with diffuse- (70%) and intestinal-type (25%) gastric adenoCarcinoma and induces apoptosis in vitro and in vivo. When used in clinical trials with Stomach Carcinoma patients, significant apoptotic and regressive effects in primary tumors have been observed with the antibody SC-1. The SC-1 receptor is a new 82 kd membrane-bound isoform of glycosylphosphatidylinositol (GPI)-linked CD55 (decay-accelerating factor, DAF). CD55 is known to protect cells from lysis through autologous complement and is coexpressed with the ubiquitously distributed 70 kd isoform. The SC-1–specific CD55 isoform is up-regulated shortly after antibody binding, followed by an internalization of the antibody/receptor-complex, whereas the membranous expression of wild-type CD55 remains unchanged. The apoptotic process is marked by cleavage of cytokeratin 18, indicating the involvement of caspase-6 in the apoptotic process. In contrast to other apoptotic pathways, a cleavage of poly(ADP-ribose)polymerase (PARP) is not observed. The expression of the cell-cycle regulator c-myc becomes up-regulated, whereas expression of topoisomerase IIα is down-regulated. Induction of apoptosis leads to an increase in the internal Ca2+ concentration, which is not necessary for the apoptotic process but for the transport of newly synthesized SC-1–specific CD55 isoform to the membrane.

  • characterization of glycosylphosphatidylinositol linked molecule cd55 decay accelerating factor as the receptor for antibody sc 1 induced apoptosis
    Cancer Research, 1999
    Co-Authors: Frank Hensel, Ralph Hermann, Hans Konrad Mullerhermelink, Christian Schubert, Karsten Schmidt, Axel Franke, Andrej Shevchenko, Matthias Mann, Peter H Vollmers
    Abstract:

    The human monoclonal antibody SC-1 induces apoptosis of Stomach Carcinoma cells and is currently used in a clinical Phase II trial. The antibody binds to a target molecule that is preferentially expressed on diffuse- and intestinal-type Stomach cancer cells and shows a very restricted expression on other normal and malignant tissues. In this paper, we show that the SC-1 receptor is a Stomach Carcinoma-associated isoform of CD55 [membrane-bound decay-accelerating factor (DAF)-B] with a relative molecular mass of approximately 82 kDa. The antigenic site of SC-1 is an N-linked carbohydrate residue. Cross-linking of the DAF receptor increases apoptotic activity. SC-1 binding induces tyrosine phosphorylation of three proteins of approximately 60, 75, and 110 kDa, whereas a serine residue of an approximately 35-kDa protein is dephosphorylated. Expression of caspase-3 (CPP32) and caspase-8 (FLICE) is elevated, and activation of these caspases occurs. These data show that a tumor-specific variant form DAF is involved in apoptosis and can be used for adjuvant therapeutical purposes on gastric Carcinoma.

Ellen L. Mercado - One of the best experts on this subject based on the ideXlab platform.

  • abstract 5520 oncogenic rtk signaling inhibits spred1 nf1 to sustain constitutive ras mapk signaling
    Cancer Research, 2018
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Pau Castel, Jillian M Silva, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following growth factor stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Spred1 and NF1 loss-of-function mutations occur across multiple cancer types including non-small cell lung Carcinoma, glioblastoma, melanoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that oncogenic RTK signaling leads to phosphorylation of Spred1(S105) in the EVH domain, which disrupts Spred1-NF1 binding and function. Phosphomimetic Spred1 is unable to suppress Ras-GTP following growth factor stimulation and cancer cell proliferation. The Spred1(S105) kinase is likely to be a CDK based on in vitro kinase and in vivo cell line assays. Our findings provide one potential mechanism by which oncogenic RTK signaling disrupts negative feedback to sustain constitutive Ras signaling. Furthermore, this work may elucidate a novel therapeutic target for restoring NF1-mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Pau Castel, Jillian Silva, Jacqueline Galeas, Kathy Li, Anatoly Urisman, Frank McCormick. Oncogenic RTK signaling inhibits Spred1/NF1 to sustain constitutive Ras/MAPK signaling [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2018; 2018 Apr 14-18; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2018;78(13 Suppl):Abstract nr 5520.

  • abstract 1370 egfr mediated spred1 phosphorylation inhibits nf1 to sustain constitutive ras mapk signaling
    Cancer Research, 2017
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Marena I Trinidad, Jillian M Silva, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following growth factor stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Spred1 and NF1 loss-of-function mutations occur across multiple cancer types including non-small cell lung Carcinoma, glioblastoma, melanoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that EGFR signaling disrupts Spred1-NF1 binding. Mass spectrometry was performed on cells overexpressing EGFRL858R to identify potential phosphorylation sites on Spred1 and NF1 that could disrupt Spred1-NF1 binding by steric hindrance. A serine phosphorylation site on Spred1 was identified in which a phosphomimetic and phosphodeficient mutant decreased or increased Spred1-NF1 binding, respectively. Phosphomimetic Spred1 is unable to suppress Ras-GTP following EGF stimulation. Therefore, phosphorylation of Spred1 at this site by a serine kinase downstream of EGFR may disrupt Spred1-NF1 binding. To identify the Spred1 kinase we are performing an in vitro kinase assay and an unbiased CRISPRa screen. Our findings provide one potential mechanism by which EGFR signaling disrupts negative feedback to sustain constitutive Ras signaling. Furthermore, this work may elucidate a novel therapeutic target for restoring NF1-mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Jillian M. Silva, Jacqueline Galeas, Marena I. Trinidad, Anatoly Urisman, Frank McCormick. EGFR-mediated Spred1 phosphorylation inhibits NF1 to sustain constitutive Ras/MAPK signaling [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 1370. doi:10.1158/1538-7445.AM2017-1370

  • abstract 1874 oncogenic egfr signaling inhibits the spred1 nf1 interaction to sustain constitutive ras signaling
    Cancer Research, 2016
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Marena I Trinidad, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following mitogen stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Loss-of-function Spred1 and NF1 mutations occur across multiple cancer types including melanoma, non-small cell lung Carcinoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that oncogenic EGFR signaling disrupts Spred1-NF1 binding. Mass spectrometry was performed on cells overexpressing EGFRL858R to identify potential phosphorylation sites on Spred1 and NF1 that could disrupt Spred1-NF1 binding by steric hindrance. A serine phosphorylation site on Spred1 was identified in which a phosphomimetic and phosphodeficient mutant decreased or increased Spred1-NF1 binding, respectively. Therefore, phosphorylation of Spred1 at this site by a serine kinase downstream of oncogenic EGFR may disrupt Spred1-NF1 binding. Our findings provide one potential mechanism by which oncogenic EGFR signaling disrupts negative feedback to allow for constitutive Ras signaling. Furthermore, this work may elucidate a novel kinase therapeutic target for restoring NF1 mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Jacqueline Galeas, Marena I. Trinidad, Anatoly Urisman, Frank McCormick. Oncogenic EGFR signaling inhibits the Spred1-NF1 interaction to sustain constitutive Ras signaling. [abstract]. In: Proceedings of the 107th Annual Meeting of the American Association for Cancer Research; 2016 Apr 16-20; New Orleans, LA. Philadelphia (PA): AACR; Cancer Res 2016;76(14 Suppl):Abstract nr 1874.

Anatoly Urisman - One of the best experts on this subject based on the ideXlab platform.

  • abstract 5520 oncogenic rtk signaling inhibits spred1 nf1 to sustain constitutive ras mapk signaling
    Cancer Research, 2018
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Pau Castel, Jillian M Silva, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following growth factor stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Spred1 and NF1 loss-of-function mutations occur across multiple cancer types including non-small cell lung Carcinoma, glioblastoma, melanoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that oncogenic RTK signaling leads to phosphorylation of Spred1(S105) in the EVH domain, which disrupts Spred1-NF1 binding and function. Phosphomimetic Spred1 is unable to suppress Ras-GTP following growth factor stimulation and cancer cell proliferation. The Spred1(S105) kinase is likely to be a CDK based on in vitro kinase and in vivo cell line assays. Our findings provide one potential mechanism by which oncogenic RTK signaling disrupts negative feedback to sustain constitutive Ras signaling. Furthermore, this work may elucidate a novel therapeutic target for restoring NF1-mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Pau Castel, Jillian Silva, Jacqueline Galeas, Kathy Li, Anatoly Urisman, Frank McCormick. Oncogenic RTK signaling inhibits Spred1/NF1 to sustain constitutive Ras/MAPK signaling [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2018; 2018 Apr 14-18; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2018;78(13 Suppl):Abstract nr 5520.

  • abstract 1370 egfr mediated spred1 phosphorylation inhibits nf1 to sustain constitutive ras mapk signaling
    Cancer Research, 2017
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Marena I Trinidad, Jillian M Silva, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following growth factor stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Spred1 and NF1 loss-of-function mutations occur across multiple cancer types including non-small cell lung Carcinoma, glioblastoma, melanoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that EGFR signaling disrupts Spred1-NF1 binding. Mass spectrometry was performed on cells overexpressing EGFRL858R to identify potential phosphorylation sites on Spred1 and NF1 that could disrupt Spred1-NF1 binding by steric hindrance. A serine phosphorylation site on Spred1 was identified in which a phosphomimetic and phosphodeficient mutant decreased or increased Spred1-NF1 binding, respectively. Phosphomimetic Spred1 is unable to suppress Ras-GTP following EGF stimulation. Therefore, phosphorylation of Spred1 at this site by a serine kinase downstream of EGFR may disrupt Spred1-NF1 binding. To identify the Spred1 kinase we are performing an in vitro kinase assay and an unbiased CRISPRa screen. Our findings provide one potential mechanism by which EGFR signaling disrupts negative feedback to sustain constitutive Ras signaling. Furthermore, this work may elucidate a novel therapeutic target for restoring NF1-mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Jillian M. Silva, Jacqueline Galeas, Marena I. Trinidad, Anatoly Urisman, Frank McCormick. EGFR-mediated Spred1 phosphorylation inhibits NF1 to sustain constitutive Ras/MAPK signaling [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 1370. doi:10.1158/1538-7445.AM2017-1370

  • abstract 1874 oncogenic egfr signaling inhibits the spred1 nf1 interaction to sustain constitutive ras signaling
    Cancer Research, 2016
    Co-Authors: Evan Markegard, Anatoly Urisman, Ellen L. Mercado, Jacqueline Galeas, Marena I Trinidad, Frank Mccormick
    Abstract:

    Spred proteins negatively regulate Ras/MAPK signaling following mitogen stimulation. Inhibition of Ras primary occurs through Spreds ability to bind and localize NF1, a RasGAP and major tumor suppressor, to the plasma membrane. Loss-of-function Spred1 and NF1 mutations occur across multiple cancer types including melanoma, non-small cell lung Carcinoma, Stomach Carcinoma, and uterine carcinosarcoma. Here we demonstrate that oncogenic EGFR signaling disrupts Spred1-NF1 binding. Mass spectrometry was performed on cells overexpressing EGFRL858R to identify potential phosphorylation sites on Spred1 and NF1 that could disrupt Spred1-NF1 binding by steric hindrance. A serine phosphorylation site on Spred1 was identified in which a phosphomimetic and phosphodeficient mutant decreased or increased Spred1-NF1 binding, respectively. Therefore, phosphorylation of Spred1 at this site by a serine kinase downstream of oncogenic EGFR may disrupt Spred1-NF1 binding. Our findings provide one potential mechanism by which oncogenic EGFR signaling disrupts negative feedback to allow for constitutive Ras signaling. Furthermore, this work may elucidate a novel kinase therapeutic target for restoring NF1 mediated inhibition of Ras. Citation Format: Evan Markegard, Ellen L. Mercado, Jacqueline Galeas, Marena I. Trinidad, Anatoly Urisman, Frank McCormick. Oncogenic EGFR signaling inhibits the Spred1-NF1 interaction to sustain constitutive Ras signaling. [abstract]. In: Proceedings of the 107th Annual Meeting of the American Association for Cancer Research; 2016 Apr 16-20; New Orleans, LA. Philadelphia (PA): AACR; Cancer Res 2016;76(14 Suppl):Abstract nr 1874.