Myant Kevin, Qiao Xi, Halonen Tuuli, Come Christophe, Laine Anni, Janghorban Mahnaz, Partanen Johanna I, Cassidy John, Ogg Erinn-Lee, Cammareri Patrizia, Laiterä Tiina, Okkeri Juha, Klefström Juha, Sears Rosalie C, Sansom Owen J, Westermarck Jukka
The Beatson Institute for Cancer Research, Glasgow G61 1BD, UK.
Turku Centre for Biotechnology, University of Turku and Åbo Akademi University, 20520 Turku, Finland; Department of Pathology, University of Turku, 20520 Turku, Finland.
Cell Rep. 2015 Aug 11;12(6):1019-31. doi: 10.1016/j.celrep.2015.07.003. Epub 2015 Jul 30.
An understanding of the mechanisms determining MYC's transcriptional and proliferation-promoting activities in vivo could facilitate approaches for MYC targeting. However, post-translational mechanisms that control MYC function in vivo are poorly understood. Here, we demonstrate that MYC phosphorylation at serine 62 enhances MYC accumulation on Lamin A/C-associated nuclear structures and that the protein phosphatase 2A (PP2A) inhibitor protein CIP2A is required for this process. CIP2A is also critical for serum-induced MYC phosphorylation and for MYC-elicited proliferation induction in vitro. Complementary transgenic approaches and an intestinal regeneration model further demonstrated the in vivo importance of CIP2A and serine 62 phosphorylation for MYC activity upon DNA damage. However, targeting of CIP2A did not influence the normal function of intestinal crypt cells. These data underline the importance of nuclear organization in the regulation of MYC phosphorylation, leading to an in vivo demonstration of a strategy for inhibiting MYC activity without detrimental physiological effects.
了解体内决定MYC转录和促进增殖活性的机制,可能有助于找到靶向MYC的方法。然而,人们对体内控制MYC功能的翻译后机制了解甚少。在这里,我们证明丝氨酸62位点的MYC磷酸化增强了MYC在与核纤层蛋白A/C相关的核结构上的积累,并且蛋白磷酸酶2A(PP2A)抑制蛋白CIP2A是这一过程所必需的。CIP2A对于血清诱导的MYC磷酸化以及体外MYC诱导的增殖也至关重要。互补的转基因方法和肠道再生模型进一步证明了CIP2A和丝氨酸62磷酸化在DNA损伤时对MYC活性的体内重要性。然而,靶向CIP2A并不影响肠隐窝细胞的正常功能。这些数据强调了核组织在MYC磷酸化调节中的重要性,从而在体内证明了一种抑制MYC活性而无有害生理影响的策略。