The Experts below are selected from a list of 245172 Experts worldwide ranked by ideXlab platform

Charles Després - One of the best experts on this subject based on the ideXlab platform.

  • Integrating Data on the Arabidopsis NPR1/NPR3/NPR4 salicylic acid receptors; a differentiating argument
    Frontiers in plant science, 2015
    Co-Authors: Xiahezi Kuai, Brandon J. Macleod, Charles Després
    Abstract:

    Salicylic acid (SA) is a mandatory plant metabolite in the deployment of systemic acquired resistance (SAR), a broad-spectrum systemic immune response induced by local inoculation with avirulent pathogens. The NPR1 transcription co-activator is the central node positively regulating SAR. SA was the last of the major hormones to be without a known receptor. Recently, NPR1 was shown to be the direct link between SA and gene activation. This discovery seems to be controversial. NPR1 being an SA-receptor is reminiscent of the mammalian steroid receptors, which are transcription factors whose binding to DNA is dependent on the interaction with a ligand. Unlike steroid receptors, NPR1 does not bind directly to DNA, but is recruited to promoters by the TGA family of transcription factors to form an enhanceosome. In Arabidopsis, NPR1 is part of a multigene family in which two other members, NPR3 and NPR4, have also been shown to interact with SA. NPR3/NPR4 are negative regulators of immunity and act as substrate adaptors for the recruitment of NPR1 to an E3-ubiquitin ligase, leading to its subsequent degradation by the proteasome. In this perspective, we will stress-test in a friendly way the current NPR1/NPR3/NPR4 model.

  • Integrating Data on the arabidopsis npr1 npr3 npr4 salicylic acid receptors a differentiating argument
    Frontiers in Plant Science, 2015
    Co-Authors: Brandon J. Macleod, Xiahezi Kuai, Charles Després
    Abstract:

    Salicylic acid (SA) is a mandatory plant metabolite in the deployment of systemic acquired resistance (SAR), a broad-spectrum systemic immune response induced by local inoculation with avirulent pathogens. The NPR1 transcription co-activator is the central node positively regulating SAR. SA was the last of the major hormones to be without a known receptor. Recently, NPR1 was shown to be the direct link between SA and gene activation. This discovery seems to be controversial. NPR1 being an SA-receptor is reminiscent of the mammalian steroid receptors, which are transcription factors whose binding to DNA is dependent on the interaction with a ligand. Unlike steroid receptors, NPR1 does not bind directly to DNA, but is recruited to promoters by the TGA family of transcription factors to form an enhanceosome. In Arabidopsis, NPR1 is part of a multigene family in which two other members, NPR3 and NPR4, have also been shown to interact with SA. NPR3/NPR4 are negative regulators of immunity and act as substrate adaptors for the recruitment of NPR1 to an E3-ubiquitin ligase, leading to its subsequent degradation by the proteasome. In this perspective, we will stress-test in a friendly way the current NPR1/NPR3/NPR4 model.

Xiahezi Kuai - One of the best experts on this subject based on the ideXlab platform.

  • Integrating Data on the Arabidopsis NPR1/NPR3/NPR4 salicylic acid receptors; a differentiating argument
    Frontiers in plant science, 2015
    Co-Authors: Xiahezi Kuai, Brandon J. Macleod, Charles Després
    Abstract:

    Salicylic acid (SA) is a mandatory plant metabolite in the deployment of systemic acquired resistance (SAR), a broad-spectrum systemic immune response induced by local inoculation with avirulent pathogens. The NPR1 transcription co-activator is the central node positively regulating SAR. SA was the last of the major hormones to be without a known receptor. Recently, NPR1 was shown to be the direct link between SA and gene activation. This discovery seems to be controversial. NPR1 being an SA-receptor is reminiscent of the mammalian steroid receptors, which are transcription factors whose binding to DNA is dependent on the interaction with a ligand. Unlike steroid receptors, NPR1 does not bind directly to DNA, but is recruited to promoters by the TGA family of transcription factors to form an enhanceosome. In Arabidopsis, NPR1 is part of a multigene family in which two other members, NPR3 and NPR4, have also been shown to interact with SA. NPR3/NPR4 are negative regulators of immunity and act as substrate adaptors for the recruitment of NPR1 to an E3-ubiquitin ligase, leading to its subsequent degradation by the proteasome. In this perspective, we will stress-test in a friendly way the current NPR1/NPR3/NPR4 model.

  • Integrating Data on the arabidopsis npr1 npr3 npr4 salicylic acid receptors a differentiating argument
    Frontiers in Plant Science, 2015
    Co-Authors: Brandon J. Macleod, Xiahezi Kuai, Charles Després
    Abstract:

    Salicylic acid (SA) is a mandatory plant metabolite in the deployment of systemic acquired resistance (SAR), a broad-spectrum systemic immune response induced by local inoculation with avirulent pathogens. The NPR1 transcription co-activator is the central node positively regulating SAR. SA was the last of the major hormones to be without a known receptor. Recently, NPR1 was shown to be the direct link between SA and gene activation. This discovery seems to be controversial. NPR1 being an SA-receptor is reminiscent of the mammalian steroid receptors, which are transcription factors whose binding to DNA is dependent on the interaction with a ligand. Unlike steroid receptors, NPR1 does not bind directly to DNA, but is recruited to promoters by the TGA family of transcription factors to form an enhanceosome. In Arabidopsis, NPR1 is part of a multigene family in which two other members, NPR3 and NPR4, have also been shown to interact with SA. NPR3/NPR4 are negative regulators of immunity and act as substrate adaptors for the recruitment of NPR1 to an E3-ubiquitin ligase, leading to its subsequent degradation by the proteasome. In this perspective, we will stress-test in a friendly way the current NPR1/NPR3/NPR4 model.

Brandon J. Macleod - One of the best experts on this subject based on the ideXlab platform.

  • Integrating Data on the Arabidopsis NPR1/NPR3/NPR4 salicylic acid receptors; a differentiating argument
    Frontiers in plant science, 2015
    Co-Authors: Xiahezi Kuai, Brandon J. Macleod, Charles Després
    Abstract:

    Salicylic acid (SA) is a mandatory plant metabolite in the deployment of systemic acquired resistance (SAR), a broad-spectrum systemic immune response induced by local inoculation with avirulent pathogens. The NPR1 transcription co-activator is the central node positively regulating SAR. SA was the last of the major hormones to be without a known receptor. Recently, NPR1 was shown to be the direct link between SA and gene activation. This discovery seems to be controversial. NPR1 being an SA-receptor is reminiscent of the mammalian steroid receptors, which are transcription factors whose binding to DNA is dependent on the interaction with a ligand. Unlike steroid receptors, NPR1 does not bind directly to DNA, but is recruited to promoters by the TGA family of transcription factors to form an enhanceosome. In Arabidopsis, NPR1 is part of a multigene family in which two other members, NPR3 and NPR4, have also been shown to interact with SA. NPR3/NPR4 are negative regulators of immunity and act as substrate adaptors for the recruitment of NPR1 to an E3-ubiquitin ligase, leading to its subsequent degradation by the proteasome. In this perspective, we will stress-test in a friendly way the current NPR1/NPR3/NPR4 model.

  • Integrating Data on the arabidopsis npr1 npr3 npr4 salicylic acid receptors a differentiating argument
    Frontiers in Plant Science, 2015
    Co-Authors: Brandon J. Macleod, Xiahezi Kuai, Charles Després
    Abstract:

    Salicylic acid (SA) is a mandatory plant metabolite in the deployment of systemic acquired resistance (SAR), a broad-spectrum systemic immune response induced by local inoculation with avirulent pathogens. The NPR1 transcription co-activator is the central node positively regulating SAR. SA was the last of the major hormones to be without a known receptor. Recently, NPR1 was shown to be the direct link between SA and gene activation. This discovery seems to be controversial. NPR1 being an SA-receptor is reminiscent of the mammalian steroid receptors, which are transcription factors whose binding to DNA is dependent on the interaction with a ligand. Unlike steroid receptors, NPR1 does not bind directly to DNA, but is recruited to promoters by the TGA family of transcription factors to form an enhanceosome. In Arabidopsis, NPR1 is part of a multigene family in which two other members, NPR3 and NPR4, have also been shown to interact with SA. NPR3/NPR4 are negative regulators of immunity and act as substrate adaptors for the recruitment of NPR1 to an E3-ubiquitin ligase, leading to its subsequent degradation by the proteasome. In this perspective, we will stress-test in a friendly way the current NPR1/NPR3/NPR4 model.

Walter H Henricks - One of the best experts on this subject based on the ideXlab platform.

  • Integrating Data from legacy systems using object linking and embedding technology development of a reporting system for heavy metal poisoning results
    Journal of the American Medical Informatics Association, 2000
    Co-Authors: Kavous Roumina, Adam Fadlalla, Walter H Henricks
    Abstract:

    Integrating Data that reside in different systems remains an often laborious process, requiring either manual steps or complicated programming. This paper describes a method for state-mandated reporting of childhood blood lead testing results that makes use of object linking and embedding technology and readily available software products to pull together information from different legacy systems. A terminal session emulator employs object linking and embedding automation to extract host Data, and Visual Basic routines specify the user interface and Database manipulation. This system has significantly increased the efficiency and accuracy with which blood lead testing reports are provided to the local state health department. The system provides a model for a relatively easy solution for laboratories and other groups that need a way to integrate standard Data sets that are distributed across legacy systems. n J Am Med Inform Assoc. 2000;7:357-360.

  • Integrating Data from legacy systems using object linking and embedding technology: development of a reporting system for heavy metal poisoning results.
    Journal of the American Medical Informatics Association : JAMIA, 2000
    Co-Authors: Shang-che Lin, Kavous Roumina, Adam Fadlalla, Walter H Henricks
    Abstract:

    Integrating Data that reside in different systems remains an often laborious process, requiring either manual steps or complicated programming. This paper describes a method for state-mandated reporting of childhood blood lead testing results that makes use of object linking and embedding technology and readily available software products to pull together information from different legacy systems. A terminal session emulator employs object linking and embedding automation to extract host Data, and Visual Basic routines specify the user interface and Database manipulation. This system has significantly increased the efficiency and accuracy with which blood lead testing reports are provided to the local state health department. The system provides a model for a relatively easy solution for laboratories and other groups that need a way to integrate standard Data sets that are distributed across legacy systems.

Kavous Roumina - One of the best experts on this subject based on the ideXlab platform.

  • Integrating Data from legacy systems using object linking and embedding technology development of a reporting system for heavy metal poisoning results
    Journal of the American Medical Informatics Association, 2000
    Co-Authors: Kavous Roumina, Adam Fadlalla, Walter H Henricks
    Abstract:

    Integrating Data that reside in different systems remains an often laborious process, requiring either manual steps or complicated programming. This paper describes a method for state-mandated reporting of childhood blood lead testing results that makes use of object linking and embedding technology and readily available software products to pull together information from different legacy systems. A terminal session emulator employs object linking and embedding automation to extract host Data, and Visual Basic routines specify the user interface and Database manipulation. This system has significantly increased the efficiency and accuracy with which blood lead testing reports are provided to the local state health department. The system provides a model for a relatively easy solution for laboratories and other groups that need a way to integrate standard Data sets that are distributed across legacy systems. n J Am Med Inform Assoc. 2000;7:357-360.

  • Integrating Data from legacy systems using object linking and embedding technology: development of a reporting system for heavy metal poisoning results.
    Journal of the American Medical Informatics Association : JAMIA, 2000
    Co-Authors: Shang-che Lin, Kavous Roumina, Adam Fadlalla, Walter H Henricks
    Abstract:

    Integrating Data that reside in different systems remains an often laborious process, requiring either manual steps or complicated programming. This paper describes a method for state-mandated reporting of childhood blood lead testing results that makes use of object linking and embedding technology and readily available software products to pull together information from different legacy systems. A terminal session emulator employs object linking and embedding automation to extract host Data, and Visual Basic routines specify the user interface and Database manipulation. This system has significantly increased the efficiency and accuracy with which blood lead testing reports are provided to the local state health department. The system provides a model for a relatively easy solution for laboratories and other groups that need a way to integrate standard Data sets that are distributed across legacy systems.