Wolf Tim, Qi Wenjing, Schindler Verena, Runkel Eva Diana, Baumeister Ralf
Faculty of Biology, Institute of Biology III, Albert-Ludwigs-University, D-79104 Freiburg, Germany.
Faculty of Biology, Institute of Biology III, Albert-Ludwigs-University, D-79104 Freiburg, Germany; Spemann Graduate School of Biology and Medicine, Albert-Ludwigs-University, D-79104 Freiburg, Germany.
Exp Gerontol. 2014 Aug;56:114-22. doi: 10.1016/j.exger.2014.04.002. Epub 2014 Apr 15.
Managing available resources is a key necessity of each organism to cope with the environment. The nematode C. elegans responds to nutritional deprivation or harsh environmental conditions with a multitude of developmental adaptations, among them a starvation-induced quiescence at early larval development (L1). daf-18, the C. elegans homolog of the human tumor suppressor gene PTEN, is essential for the maintenance of survival and germline stem cell arrest during the L1 diapause. We show here that daf-18 mutants, independently to their failure to maintain G2 arrest of the primordial germ cells, develop a gonad phenotype after refeeding. This highly penetrant gonadal phenotype is further enhanced by a mutation in shc-1, encoding a protein homologous to the human adaptor ShcA. Features of this phenotype are a tumor-like phenotype encompassing hyper-proliferation of germ cell nuclei and disruption/invasion of the basement membrane surrounding the gonad. The penetrance of this phenotype is reduced by decreasing starvation temperature. In addition, it is also ameliorated in a dose-dependent way by exposure to the antibiotic doxycyclin either during starvation or during subsequent refeeding. Since, in eukaryotic cells, doxycyclin specifically blocks mitochondrial translation, our results suggest that daf-18 and shc-1;daf-18 mutants fail to adapt mitochondrial activity to reduced nutritional availability during early larval developing.
管理可用资源是每个生物体应对环境的关键必要条件。线虫秀丽隐杆线虫对营养剥夺或恶劣环境条件会产生多种发育适应性反应,其中包括在幼虫早期发育(L1)时由饥饿诱导的静止状态。daf-18是人类肿瘤抑制基因PTEN的秀丽隐杆线虫同源物,对于在L1滞育期间维持生存和生殖系干细胞停滞至关重要。我们在此表明,daf-18突变体在重新喂食后会出现性腺表型,这与其无法维持原始生殖细胞的G2停滞无关。编码与人类衔接蛋白ShcA同源的蛋白质的shc-1突变会进一步增强这种高 penetrant性腺表型。这种表型的特征是一种肿瘤样表型,包括生殖细胞核的过度增殖以及性腺周围基底膜的破坏/侵入。降低饥饿温度会降低这种表型的 penetrance。此外,在饥饿期间或随后的重新喂食期间暴露于抗生素强力霉素也会以剂量依赖的方式改善这种表型。由于在真核细胞中,强力霉素会特异性阻断线粒体翻译,我们的结果表明,daf-18和shc-1;daf-18突变体在幼虫早期发育期间无法使线粒体活性适应营养可用性的降低。