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秀丽隐杆线虫中的排泄腺细胞和神经干细胞前体基因:探究它们的生理作用。

Excretory gland cell and NSPC genes in C. elegans: investigating their physiological roles.

作者信息

Mackiewicz Zuzanna, Liudkovska Vladyslava, Dziembowski Andrzej

机构信息

Laboratory of RNA Biology, International Institute of Molecular and Cell Biology, Trojdena 4 Warsaw 02-109, Poland.

Laboratory of Stem Cell RNA Metabolism, IMol Polish Academy of Sciences, Flisa 6 Warsaw 02-247, Poland.

出版信息

Genetics. 2025 Sep 3;231(1). doi: 10.1093/genetics/iyaf125.

Abstract

The nematode Caenorhabditis elegans is one of the best-studied model organisms in molecular biology; however, many aspects of its physiology and the functions of many genes remain poorly understood. In this study, we investigated the role of Nematode-Specific Peptide Family, group C (NSPC) proteins, whose mRNAs were recently identified as primary targets of the poly(A) polymerase TENT-5. Surprisingly, we found that NSPCs are exclusively expressed in the excretory gland cell, a cell with still unclear functionality. Using an optogenetic approach, we precisely ablated the excretory gland cell and observed that, apart from a strong downregulation of NSPCs, nematodes exhibited no transcriptomic or physiological changes in its absence. Additionally, we generated and thoroughly studied a strain with a deletion of all 18 nspc genes, which revealed that, despite previous indications, NSPCs do not influence the worm's defense response. Instead, the transcriptomic analysis showed that the absence of NSPCs results in gene expression changes resembling those observed for DAF-16 mutants, suggesting that NSPCs may somehow influence the key C. elegans insulin signaling pathway. Although further studies are required to explain the exact genetic interaction and elucidate its physiological effects, our findings provide new insights into this unexplored part of nematode physiology.

摘要

线虫秀丽隐杆线虫是分子生物学中研究最为深入的模式生物之一;然而,其生理学的许多方面以及许多基因的功能仍知之甚少。在本研究中,我们调查了线虫特异性肽家族C组(NSPC)蛋白的作用,其mRNA最近被确定为聚腺苷酸聚合酶TENT-5的主要靶标。令人惊讶的是,我们发现NSPC仅在排泄腺细胞中表达,而该细胞的功能仍不清楚。我们采用光遗传学方法精确消融了排泄腺细胞,观察到,除了NSPC的强烈下调外,线虫在其缺失时没有表现出转录组或生理变化。此外,我们构建并深入研究了一个缺失所有18个nspc基因的品系,结果表明,尽管之前有迹象表明,但NSPC并不影响线虫的防御反应。相反,转录组分析表明,NSPC的缺失导致基因表达变化,类似于在DAF-16突变体中观察到的变化,这表明NSPC可能以某种方式影响线虫关键的胰岛素信号通路。尽管需要进一步研究来解释确切的遗传相互作用并阐明其生理效应,但我们的发现为线虫生理学这一未被探索的部分提供了新的见解。

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