Perucho Laura, Artero-Castro Ana, Guerrero Sergi, Ramón y Cajal Santiago, LLeonart Matilde E, Wang Zhao-Qi
Leibniz Institute for Age Research - Fritz Lipmann Institute (FLI), Jena, Germany.
Oncology and Pathology Group, Institut de Recerca Hospital Vall d'Hebron, Barcelona, Spain.
PLoS One. 2014 Jun 24;9(6):e99956. doi: 10.1371/journal.pone.0099956. eCollection 2014.
Ribosomal proteins are pivotal to development and tissue homeostasis. RP Large P1 (Rplp1) overexpression is associated with tumorigenesis. However, the physiological function of Rplp1 in mammalian development remains unknown. In this study, we disrupted Rplp1 in the mouse germline and central nervous system (Rplp1CNSΔ). Rplp1 heterozygosity caused body size reductions, male infertility, systemic abnormalities in various tissues and a high frequency of early postnatal death. Rplp1CNSΔ newborn mice exhibited perinatal lethality and brain atrophy with size reductions of the neocortex, midbrain and ganglionic eminence. The Rplp1 knockout neocortex exhibited progenitor cell proliferation arrest and apoptosis due to the dysregulation of key cell cycle and apoptosis regulators (cyclin A, cyclin E, p21CIP1, p27KIP1, p53). Similarly, Rplp1 deletion in pMEFs led to proliferation arrest and premature senescence. Importantly, Rplp1 deletion in primary mouse embryonic fibroblasts did not alter global protein synthesis, but did change the expression patterns of specific protein subsets involved in protein folding and the unfolded protein response, cell death, protein transport and signal transduction, among others. Altogether, we demonstrated that the translation "fine-tuning" exerted by Rplp1 is essential for embryonic and brain development and for proper cell proliferation.
核糖体蛋白对发育和组织稳态至关重要。核糖体蛋白大亚基P1(Rplp1)的过表达与肿瘤发生相关。然而,Rplp1在哺乳动物发育中的生理功能仍不清楚。在本研究中,我们在小鼠生殖系和中枢神经系统中破坏了Rplp1(Rplp1CNSΔ)。Rplp1杂合性导致体型减小、雄性不育、各种组织的系统性异常以及出生后早期高死亡率。Rplp1CNSΔ新生小鼠表现出围产期致死率和脑萎缩,新皮层、中脑和神经节隆起尺寸减小。Rplp1基因敲除的新皮层由于关键细胞周期和凋亡调节因子(细胞周期蛋白A、细胞周期蛋白E、p21CIP1、p27KIP1、p53)的失调而表现出祖细胞增殖停滞和凋亡。同样,pMEF中Rplp1的缺失导致增殖停滞和早衰。重要的是,原代小鼠胚胎成纤维细胞中Rplp1的缺失并未改变整体蛋白质合成,但确实改变了参与蛋白质折叠和未折叠蛋白反应、细胞死亡、蛋白质转运和信号转导等特定蛋白质亚群的表达模式。总之,我们证明了Rplp1发挥的翻译“微调”对胚胎和脑发育以及适当的细胞增殖至关重要。