Ding Zonghui, Liu Yue, Rubio Valentina, He Jinjie, Minze Laurie J, Shi Zheng-Zheng
Department of Cardiovascular Sciences, Houston Methodist Research Institute, Weill Cornell Medical College, Houston, Texas, USA.
Department of Cardiovascular Sciences, Houston Methodist Research Institute, Weill Cornell Medical College, Houston, Texas, USA Department of Surgical Oncology, The Second Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou, Zhejiang, China.
Mol Cell Biol. 2016 Sep 26;36(20):2568-82. doi: 10.1128/MCB.00137-16. Print 2016 Oct 15.
OLA1, an Obg-family GTPase, has been implicated in eukaryotic initiation factor 2 (eIF2)-mediated translational control, but its physiological functions remain obscure. Here we report that mouse embryos lacking OLA1 have stunted growth, delayed development leading to immature organs-especially lungs-at birth, and frequent perinatal lethality. Proliferation of primary Ola1(-/-) mouse embryonic fibroblasts (MEFs) is impaired due to defective cell cycle progression, associated with reduced cyclins D1 and E1, attenuated Rb phosphorylation, and increased p21(Cip1/Waf1) Accumulation of p21 in Ola1(-/-) MEFs is due to enhanced mRNA translation and can be prevented by either reconstitution of OLA1 expression or treatment with an eIF2α dephosphorylation inhibitor, suggesting that OLA1 regulates p21 through a translational mechanism involving eIF2. With immunohistochemistry, overexpression of p21 protein was detected in Ola1-null embryos with reduced cell proliferation. Moreover, we have generated p21(-/-) Ola1(-/-) mice and found that knockout of p21 can partially rescue the growth retardation defect of Ola1(-/-) embryos but fails to rescue them from developmental delay and the lethality. These data demonstrate, for the first time, that OLA1 is required for normal progression of mammalian development. OLA1 plays an important role in promoting cell proliferation at least in part through suppression of p21 and organogenesis via factors yet to be discovered.
OLA1是一种属于Obg家族的GTP酶,与真核生物起始因子2(eIF2)介导的翻译控制有关,但其生理功能仍不清楚。在此我们报告,缺乏OLA1的小鼠胚胎生长发育迟缓,发育延迟导致出生时器官不成熟,尤其是肺部,并且围产期致死率很高。原代Ola1(-/-)小鼠胚胎成纤维细胞(MEF)的增殖受损,原因是细胞周期进程存在缺陷,这与细胞周期蛋白D1和E1减少、Rb磷酸化减弱以及p21(Cip1/Waf1)增加有关。Ola1(-/-)MEF中p21的积累是由于mRNA翻译增强,并且可以通过恢复OLA1表达或用eIF2α去磷酸化抑制剂处理来预防,这表明OLA1通过涉及eIF2的翻译机制调节p21。通过免疫组织化学方法,在细胞增殖减少的Ola1基因敲除胚胎中检测到p21蛋白过表达。此外,我们培育出了p21(-/-)Ola1(-/-)小鼠,发现敲除p21可以部分挽救Ola1(-/-)胚胎的生长迟缓缺陷,但无法使其从发育延迟和致死状态中恢复。这些数据首次证明,OLA1是哺乳动物正常发育进程所必需的。OLA1至少部分通过抑制p21以及通过尚未发现的因子促进器官发生,在促进细胞增殖中发挥重要作用。