B56 gamma Tumor-Associated Mutations Provide New Mechanisms for B56 gamma-PP2A Tumor Suppressor Activity

作者:Nobumori Yumiko; Shouse Geoffrey P; Wu Yong; Lee Kyu Joon; Shen Binghui; Liu Xuan*
来源:Molecular Cancer Research, 2013, 11(9): 995-1003.
DOI:10.1158/1541-7786.MCR-12-0633

摘要

The hetero-trimeric PP2A serine/threonine phosphatases containing the regulatory subunit B56, and in particular B56 gamma, can function as tumor suppressors. In response to DNA damage, the B56 gamma subunit complexes with the PP2A AC core (B56 gamma-PP2A) and binds p53. This event promotes PP2A-mediated dephosphorylation of p53 at Thr55, which induces expression of p21, and the subsequent inhibition of cell proliferation and transformation. In addition to dephosphorylation of p53, B56 gamma-PP2A also inhibits cell proliferation and transformation by a second, as yet unknown, p53-independent mechanism. Here, we interrogated a panel of B56 gamma mutations found in human cancer samples and cell lines and showed that these mutations lost B56 gamma tumor-suppressive activity by two distinct mechanisms: one is by disrupting interactions with the PP2A AC core and the other with B56 gamma-PP2A substrates (p53 and unknown proteins). For the first mechanism, due to the absence of the C catalytic subunit in the complex, the mutants are unable to mediate dephosphorylation of any substrate and thus failed to promote both the p53-dependent and -independent tumor-suppressive functions of B56 gamma-PP2A. For the second mechanism, the mutants lacked specific substrate interactions and thus partially lost tumor-suppressive function, i.e., either the p53-dependent or p53-independent contingent upon which substrate binding was affected. Overall, these data provide new insight into the mechanisms of tumor suppression by B56 gamma.

  • 出版日期2013-9