Yeo Shi Yun, Itahana Yoko, Guo Alvin Kunyao, Han Rachel, Iwamoto Kozue, Nguyen Hung Thanh, Bao Yi, Kleiber Kai, Wu Ya Jun, Bay Boon Huat, Voorhoeve Mathijs, Itahana Koji
Cancer & Stem Cell Biology Program, Duke-NUS Medical School, , Singapore.
Department of Anatomy, Yong Loo Lin School of Medicine, National University Health System, , Singapore.
Elife. 2016 Mar 9;5:e07101. doi: 10.7554/eLife.07101.
Genetic alterations which impair the function of the TP53 signaling pathway in TP53 wild-type human tumors remain elusive. To identify new components of this pathway, we performed a screen for genes whose loss-of-function debilitated TP53 signaling and enabled oncogenic transformation of human mammary epithelial cells. We identified transglutaminase 2 (TGM2) as a putative tumor suppressor in the TP53 pathway. TGM2 suppressed colony formation in soft agar and tumor formation in a xenograft mouse model. The depletion of growth supplements induced both TGM2 expression and autophagy in a TP53-dependent manner, and TGM2 promoted autophagic flux by enhancing autophagic protein degradation and autolysosome clearance. Reduced expression of both CDKN1A, which regulates the cell cycle downstream of TP53, and TGM2 synergized to promote oncogenic transformation. Our findings suggest that TGM2-mediated autophagy and CDKN1A-mediated cell cycle arrest are two important barriers in the TP53 pathway that prevent oncogenic transformation.
在TP53野生型人类肿瘤中,损害TP53信号通路功能的基因改变仍然难以捉摸。为了鉴定该通路的新成分,我们对那些功能丧失会削弱TP53信号并使人乳腺上皮细胞发生致癌转化的基因进行了筛选。我们确定转谷氨酰胺酶2(TGM2)是TP53通路中的一种假定肿瘤抑制因子。TGM2抑制软琼脂中的集落形成以及异种移植小鼠模型中的肿瘤形成。生长补充剂的耗尽以TP53依赖的方式诱导TGM2表达和自噬,并且TGM2通过增强自噬蛋白降解和自溶酶体清除来促进自噬通量。调节TP53下游细胞周期的CDKN1A和TGM2的表达降低协同促进致癌转化。我们的研究结果表明,TGM2介导的自噬和CDKN1A介导的细胞周期阻滞是TP53通路中防止致癌转化的两个重要障碍。