The Experts below are selected from a list of 15879 Experts worldwide ranked by ideXlab platform

Xin Yan - One of the best experts on this subject based on the ideXlab platform.

  • microRNA 200b and microRNA 200c promote colorectal cancer cell proliferation via targeting the reversion inducing cysteine rich protein with kazal motifs
    RNA Biology, 2015
    Co-Authors: Yi Pan, Hongwei Liang, Weixu Chen, Hongjie Zhang, Nan Wang, Feng Wang, Suyang Zhang, Yanqing Liu, Chihao Zhao, Xin Yan
    Abstract:

    microRNA-200b and microRNA-200c (miR-200b/c) are 2 of the most frequently upregulated oncomiRs in colorectal cancer cells. The role of miR-200b/c during colorectal tumorigenesis, however, remains unclear. In the present study, we report that miR-200b/c can promote colorectal cancer cell proliferation via targeting the reversion-inducing cysteine-rich protein with Kazal motifs (RECK). Firstly, bioinformatics analysis predicted RECK as a conserved target of miR-200b/c. By overexpressing or knocking down miR-200b/c in colorectal cancer cells, we experimentally validated that miR-200b/c are direct regulators of RECK. Secondly, an inverse correlation between the levels of miR-200b/c and RECK protein was found in human colorectal cancer tissues and cell lines. Thirdly, we demonstrated that repression of RECK by miR-200b/c consequently triggered SKP2 (S-phase kinase-associated protein 2) elevation and p27Kip1 (also known as cyclin-dependent kinase inhibitor 1B) degradation in colorectal cancer cells, which event...

  • microRNA 200b and microRNA 200c promote colorectal cancer cell proliferation via targeting the reversion inducing cysteine rich protein with kazal motifs
    RNA Biology, 2015
    Co-Authors: Yi Pan, Hongwei Liang, Weixu Chen, Hongjie Zhang, Nan Wang, Feng Wang, Suyang Zhang, Yanqing Liu, Chihao Zhao, Xin Yan
    Abstract:

    microRNA-200b and microRNA-200c (miR-200b/c) are 2 of the most frequently upregulated oncomiRs in colorectal cancer cells. The role of miR-200b/c during colorectal tumorigenesis, however, remains unclear. In the present study, we report that miR-200b/c can promote colorectal cancer cell proliferation via targeting the reversion-inducing cysteine-rich protein with Kazal motifs (RECK). Firstly, bioinformatics analysis predicted RECK as a conserved target of miR-200b/c. By overexpressing or knocking down miR-200b/c in colorectal cancer cells, we experimentally validated that miR-200b/c are direct regulators of RECK. Secondly, an inverse correlation between the levels of miR-200b/c and RECK protein was found in human colorectal cancer tissues and cell lines. Thirdly, we demonstrated that repression of RECK by miR-200b/c consequently triggered SKP2 (S-phase kinase-associated protein 2) elevation and p27(Kip1) (also known as cyclin-dependent kinase inhibitor 1B) degradation in colorectal cancer cells, which eventually promotes cancer cell proliferation. Finally, promoting tumor cell growth by miR-200b/c-targeting RECK was also observed in the xenograft mouse model. Taken together, our results demonstrate that miR-200b/c play a critical role in promoting colorectal tumorigenesis through inhibiting RECK expression and subsequently triggering SKP2 elevation and p27(Kip1) degradation.

Yi Pan - One of the best experts on this subject based on the ideXlab platform.

  • microRNA 200b and microRNA 200c promote colorectal cancer cell proliferation via targeting the reversion inducing cysteine rich protein with kazal motifs
    RNA Biology, 2015
    Co-Authors: Yi Pan, Hongwei Liang, Weixu Chen, Hongjie Zhang, Nan Wang, Feng Wang, Suyang Zhang, Yanqing Liu, Chihao Zhao, Xin Yan
    Abstract:

    microRNA-200b and microRNA-200c (miR-200b/c) are 2 of the most frequently upregulated oncomiRs in colorectal cancer cells. The role of miR-200b/c during colorectal tumorigenesis, however, remains unclear. In the present study, we report that miR-200b/c can promote colorectal cancer cell proliferation via targeting the reversion-inducing cysteine-rich protein with Kazal motifs (RECK). Firstly, bioinformatics analysis predicted RECK as a conserved target of miR-200b/c. By overexpressing or knocking down miR-200b/c in colorectal cancer cells, we experimentally validated that miR-200b/c are direct regulators of RECK. Secondly, an inverse correlation between the levels of miR-200b/c and RECK protein was found in human colorectal cancer tissues and cell lines. Thirdly, we demonstrated that repression of RECK by miR-200b/c consequently triggered SKP2 (S-phase kinase-associated protein 2) elevation and p27Kip1 (also known as cyclin-dependent kinase inhibitor 1B) degradation in colorectal cancer cells, which event...

  • microRNA 200b and microRNA 200c promote colorectal cancer cell proliferation via targeting the reversion inducing cysteine rich protein with kazal motifs
    RNA Biology, 2015
    Co-Authors: Yi Pan, Hongwei Liang, Weixu Chen, Hongjie Zhang, Nan Wang, Feng Wang, Suyang Zhang, Yanqing Liu, Chihao Zhao, Xin Yan
    Abstract:

    microRNA-200b and microRNA-200c (miR-200b/c) are 2 of the most frequently upregulated oncomiRs in colorectal cancer cells. The role of miR-200b/c during colorectal tumorigenesis, however, remains unclear. In the present study, we report that miR-200b/c can promote colorectal cancer cell proliferation via targeting the reversion-inducing cysteine-rich protein with Kazal motifs (RECK). Firstly, bioinformatics analysis predicted RECK as a conserved target of miR-200b/c. By overexpressing or knocking down miR-200b/c in colorectal cancer cells, we experimentally validated that miR-200b/c are direct regulators of RECK. Secondly, an inverse correlation between the levels of miR-200b/c and RECK protein was found in human colorectal cancer tissues and cell lines. Thirdly, we demonstrated that repression of RECK by miR-200b/c consequently triggered SKP2 (S-phase kinase-associated protein 2) elevation and p27(Kip1) (also known as cyclin-dependent kinase inhibitor 1B) degradation in colorectal cancer cells, which eventually promotes cancer cell proliferation. Finally, promoting tumor cell growth by miR-200b/c-targeting RECK was also observed in the xenograft mouse model. Taken together, our results demonstrate that miR-200b/c play a critical role in promoting colorectal tumorigenesis through inhibiting RECK expression and subsequently triggering SKP2 elevation and p27(Kip1) degradation.

Chihao Zhao - One of the best experts on this subject based on the ideXlab platform.

  • microRNA 200b and microRNA 200c promote colorectal cancer cell proliferation via targeting the reversion inducing cysteine rich protein with kazal motifs
    RNA Biology, 2015
    Co-Authors: Yi Pan, Hongwei Liang, Weixu Chen, Hongjie Zhang, Nan Wang, Feng Wang, Suyang Zhang, Yanqing Liu, Chihao Zhao, Xin Yan
    Abstract:

    microRNA-200b and microRNA-200c (miR-200b/c) are 2 of the most frequently upregulated oncomiRs in colorectal cancer cells. The role of miR-200b/c during colorectal tumorigenesis, however, remains unclear. In the present study, we report that miR-200b/c can promote colorectal cancer cell proliferation via targeting the reversion-inducing cysteine-rich protein with Kazal motifs (RECK). Firstly, bioinformatics analysis predicted RECK as a conserved target of miR-200b/c. By overexpressing or knocking down miR-200b/c in colorectal cancer cells, we experimentally validated that miR-200b/c are direct regulators of RECK. Secondly, an inverse correlation between the levels of miR-200b/c and RECK protein was found in human colorectal cancer tissues and cell lines. Thirdly, we demonstrated that repression of RECK by miR-200b/c consequently triggered SKP2 (S-phase kinase-associated protein 2) elevation and p27Kip1 (also known as cyclin-dependent kinase inhibitor 1B) degradation in colorectal cancer cells, which event...

  • microRNA 200b and microRNA 200c promote colorectal cancer cell proliferation via targeting the reversion inducing cysteine rich protein with kazal motifs
    RNA Biology, 2015
    Co-Authors: Yi Pan, Hongwei Liang, Weixu Chen, Hongjie Zhang, Nan Wang, Feng Wang, Suyang Zhang, Yanqing Liu, Chihao Zhao, Xin Yan
    Abstract:

    microRNA-200b and microRNA-200c (miR-200b/c) are 2 of the most frequently upregulated oncomiRs in colorectal cancer cells. The role of miR-200b/c during colorectal tumorigenesis, however, remains unclear. In the present study, we report that miR-200b/c can promote colorectal cancer cell proliferation via targeting the reversion-inducing cysteine-rich protein with Kazal motifs (RECK). Firstly, bioinformatics analysis predicted RECK as a conserved target of miR-200b/c. By overexpressing or knocking down miR-200b/c in colorectal cancer cells, we experimentally validated that miR-200b/c are direct regulators of RECK. Secondly, an inverse correlation between the levels of miR-200b/c and RECK protein was found in human colorectal cancer tissues and cell lines. Thirdly, we demonstrated that repression of RECK by miR-200b/c consequently triggered SKP2 (S-phase kinase-associated protein 2) elevation and p27(Kip1) (also known as cyclin-dependent kinase inhibitor 1B) degradation in colorectal cancer cells, which eventually promotes cancer cell proliferation. Finally, promoting tumor cell growth by miR-200b/c-targeting RECK was also observed in the xenograft mouse model. Taken together, our results demonstrate that miR-200b/c play a critical role in promoting colorectal tumorigenesis through inhibiting RECK expression and subsequently triggering SKP2 elevation and p27(Kip1) degradation.

Weixu Chen - One of the best experts on this subject based on the ideXlab platform.

  • microRNA 200b and microRNA 200c promote colorectal cancer cell proliferation via targeting the reversion inducing cysteine rich protein with kazal motifs
    RNA Biology, 2015
    Co-Authors: Yi Pan, Hongwei Liang, Weixu Chen, Hongjie Zhang, Nan Wang, Feng Wang, Suyang Zhang, Yanqing Liu, Chihao Zhao, Xin Yan
    Abstract:

    microRNA-200b and microRNA-200c (miR-200b/c) are 2 of the most frequently upregulated oncomiRs in colorectal cancer cells. The role of miR-200b/c during colorectal tumorigenesis, however, remains unclear. In the present study, we report that miR-200b/c can promote colorectal cancer cell proliferation via targeting the reversion-inducing cysteine-rich protein with Kazal motifs (RECK). Firstly, bioinformatics analysis predicted RECK as a conserved target of miR-200b/c. By overexpressing or knocking down miR-200b/c in colorectal cancer cells, we experimentally validated that miR-200b/c are direct regulators of RECK. Secondly, an inverse correlation between the levels of miR-200b/c and RECK protein was found in human colorectal cancer tissues and cell lines. Thirdly, we demonstrated that repression of RECK by miR-200b/c consequently triggered SKP2 (S-phase kinase-associated protein 2) elevation and p27Kip1 (also known as cyclin-dependent kinase inhibitor 1B) degradation in colorectal cancer cells, which event...

  • microRNA 200b and microRNA 200c promote colorectal cancer cell proliferation via targeting the reversion inducing cysteine rich protein with kazal motifs
    RNA Biology, 2015
    Co-Authors: Yi Pan, Hongwei Liang, Weixu Chen, Hongjie Zhang, Nan Wang, Feng Wang, Suyang Zhang, Yanqing Liu, Chihao Zhao, Xin Yan
    Abstract:

    microRNA-200b and microRNA-200c (miR-200b/c) are 2 of the most frequently upregulated oncomiRs in colorectal cancer cells. The role of miR-200b/c during colorectal tumorigenesis, however, remains unclear. In the present study, we report that miR-200b/c can promote colorectal cancer cell proliferation via targeting the reversion-inducing cysteine-rich protein with Kazal motifs (RECK). Firstly, bioinformatics analysis predicted RECK as a conserved target of miR-200b/c. By overexpressing or knocking down miR-200b/c in colorectal cancer cells, we experimentally validated that miR-200b/c are direct regulators of RECK. Secondly, an inverse correlation between the levels of miR-200b/c and RECK protein was found in human colorectal cancer tissues and cell lines. Thirdly, we demonstrated that repression of RECK by miR-200b/c consequently triggered SKP2 (S-phase kinase-associated protein 2) elevation and p27(Kip1) (also known as cyclin-dependent kinase inhibitor 1B) degradation in colorectal cancer cells, which eventually promotes cancer cell proliferation. Finally, promoting tumor cell growth by miR-200b/c-targeting RECK was also observed in the xenograft mouse model. Taken together, our results demonstrate that miR-200b/c play a critical role in promoting colorectal tumorigenesis through inhibiting RECK expression and subsequently triggering SKP2 elevation and p27(Kip1) degradation.

Nan Wang - One of the best experts on this subject based on the ideXlab platform.

  • microRNA 200b and microRNA 200c promote colorectal cancer cell proliferation via targeting the reversion inducing cysteine rich protein with kazal motifs
    RNA Biology, 2015
    Co-Authors: Yi Pan, Hongwei Liang, Weixu Chen, Hongjie Zhang, Nan Wang, Feng Wang, Suyang Zhang, Yanqing Liu, Chihao Zhao, Xin Yan
    Abstract:

    microRNA-200b and microRNA-200c (miR-200b/c) are 2 of the most frequently upregulated oncomiRs in colorectal cancer cells. The role of miR-200b/c during colorectal tumorigenesis, however, remains unclear. In the present study, we report that miR-200b/c can promote colorectal cancer cell proliferation via targeting the reversion-inducing cysteine-rich protein with Kazal motifs (RECK). Firstly, bioinformatics analysis predicted RECK as a conserved target of miR-200b/c. By overexpressing or knocking down miR-200b/c in colorectal cancer cells, we experimentally validated that miR-200b/c are direct regulators of RECK. Secondly, an inverse correlation between the levels of miR-200b/c and RECK protein was found in human colorectal cancer tissues and cell lines. Thirdly, we demonstrated that repression of RECK by miR-200b/c consequently triggered SKP2 (S-phase kinase-associated protein 2) elevation and p27Kip1 (also known as cyclin-dependent kinase inhibitor 1B) degradation in colorectal cancer cells, which event...

  • microRNA 200b and microRNA 200c promote colorectal cancer cell proliferation via targeting the reversion inducing cysteine rich protein with kazal motifs
    RNA Biology, 2015
    Co-Authors: Yi Pan, Hongwei Liang, Weixu Chen, Hongjie Zhang, Nan Wang, Feng Wang, Suyang Zhang, Yanqing Liu, Chihao Zhao, Xin Yan
    Abstract:

    microRNA-200b and microRNA-200c (miR-200b/c) are 2 of the most frequently upregulated oncomiRs in colorectal cancer cells. The role of miR-200b/c during colorectal tumorigenesis, however, remains unclear. In the present study, we report that miR-200b/c can promote colorectal cancer cell proliferation via targeting the reversion-inducing cysteine-rich protein with Kazal motifs (RECK). Firstly, bioinformatics analysis predicted RECK as a conserved target of miR-200b/c. By overexpressing or knocking down miR-200b/c in colorectal cancer cells, we experimentally validated that miR-200b/c are direct regulators of RECK. Secondly, an inverse correlation between the levels of miR-200b/c and RECK protein was found in human colorectal cancer tissues and cell lines. Thirdly, we demonstrated that repression of RECK by miR-200b/c consequently triggered SKP2 (S-phase kinase-associated protein 2) elevation and p27(Kip1) (also known as cyclin-dependent kinase inhibitor 1B) degradation in colorectal cancer cells, which eventually promotes cancer cell proliferation. Finally, promoting tumor cell growth by miR-200b/c-targeting RECK was also observed in the xenograft mouse model. Taken together, our results demonstrate that miR-200b/c play a critical role in promoting colorectal tumorigenesis through inhibiting RECK expression and subsequently triggering SKP2 elevation and p27(Kip1) degradation.