Xie Guangjie, Shao Zhiyong
State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Institutes of Brain Science, Department of Neurosurgery, Fudan University, Shanghai, China.
J Mol Histol. 2024 Aug;55(4):491-502. doi: 10.1007/s10735-024-10205-5. Epub 2024 Jun 13.
Diapause is an endocrine-mediated metabolic and growth arrest state in response to unfavorable external environments. The nematode Caenorhabditis elegans can enter diapause/arrest during embryonic, larval, or adult stages when subjected to detrimental external environments. Larval stage 1 (L1) arrest happens when animals hatch without food. Previous work has shown that the insulin pathway plays a prominent role in regulating L1 arrest. However, the downstream signal molecular mechanisms and biomarkers are still missing. In this study, we showed that SaPosin-like Protein family member SPP-5 is significantly upregulated during L1 arrest, suggesting that it could act as an L1 arrest biomarker. Using RNA interference we demonstrated that spp-5 knockdown accelerated larval development, while the overexpression resulted in L1 arrest. Consistently, SPP-5 level was significantly up-regulated in the L1 arrest daf-2(e1370) mutants, and spp-5(RNAi) suppressed the daf-2(e1370) induced L1 arrest. These results suggest that SPP-5 can serve as an L1 arrest biomarker and promote the arrest probably via the insulin signaling pathway.
滞育是一种由内分泌介导的、针对不利外部环境的代谢和生长停滞状态。线虫秀丽隐杆线虫在胚胎期、幼虫期或成虫期受到有害外部环境影响时会进入滞育/停滞状态。当动物孵化后没有食物时,会发生1龄幼虫(L1)停滞。先前的研究表明,胰岛素信号通路在调节L1停滞中起重要作用。然而,下游信号分子机制和生物标志物仍然未知。在本研究中,我们发现类蛇毒蛋白家族成员SPP-5在L1停滞期间显著上调,表明它可能作为L1停滞的生物标志物。使用RNA干扰,我们证明敲低spp-5会加速幼虫发育,而过表达则导致L1停滞。同样,在L1停滞的daf-2(e1370)突变体中,SPP-5水平显著上调,并且spp-5(RNAi)抑制了daf-2(e1370)诱导的L1停滞。这些结果表明,SPP-5可以作为L1停滞的生物标志物,并且可能通过胰岛素信号通路促进停滞。