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钠钾阳离子泵CATP-1的缺失抑制了与nekl相关的蜕皮缺陷。

Loss of the Na+/K+ cation pump CATP-1 suppresses nekl-associated molting defects.

作者信息

Binti Shaonil, Edeen Phil T, Fay David S

机构信息

Department of Molecular Biology, College of Agriculture, Life Sciences and Natural Resources, University of Wyoming, Laramie, Wyoming 82071, USA.

出版信息

G3 (Bethesda). 2024 Oct 21;14(12). doi: 10.1093/g3journal/jkae244.

Abstract

The conserved Caenorhabditis elegans protein kinases NEKL-2 and NEKL-3 regulate membrane trafficking and are required for larval molting. Through a forward genetic screen we identified a mutation in catp-1 as a suppressor of molting defects in synthetically lethal nekl-2; nekl-3 double mutants. catp-1 encodes a membrane-associated P4-type ATPase involved in Na+-K+ exchange. A previous study found that wild-type worms exposed to the nicotinic agonist dimethylphenylpiperazinium (DMPP) exhibited larval arrest and molting-associated defects, which were suppressed by inhibition of catp-1. By testing a spectrum catp-1 alleles, we found that resistance to DMPP toxicity and the suppression of nekl defects did not strongly correlate, suggesting key differences in the mechanism of catp-1-mediated suppression. Through whole genome sequencing of additional nekl-2; nekl-3 suppressor strains, we identified two additional coding-altering mutations in catp-1. However, neither mutation, when introduced into nekl-2; nekl-3 mutants using CRISPR, was sufficient to elicit robust suppression of molting defects, suggesting the involvement of other loci. Endogenously tagged CATP-1 was primarily expressed in epidermal cells within punctate structures located near the apical plasma membrane, consistent with a role in regulating cellular processes within the epidermis. Based on previous studies, we tested the hypothesis that catp-1 inhibition induces entry into the pre-dauer L2d stage, potentially accounting for the ability of catp-1 mutants to suppress nekl molting defects. However, we found no evidence that loss of catp-1 leads to entry into L2d. As such, loss of catp-1 may suppress nekl-associated and DMPP-induced defects by altering electrochemical gradients within membrane-bound compartments.

摘要

保守的秀丽隐杆线虫蛋白激酶NEKL-2和NEKL-3调节膜运输,是幼虫蜕皮所必需的。通过正向遗传筛选,我们鉴定出catp-1中的一个突变作为合成致死性nekl-2;nekl-3双突变体中蜕皮缺陷的抑制因子。catp-1编码一种参与Na+-K+交换的膜相关P4型ATP酶。先前的一项研究发现,暴露于烟碱激动剂二甲基苯基哌嗪(DMPP)的野生型线虫表现出幼虫停滞和与蜕皮相关的缺陷,而抑制catp-1可抑制这些缺陷。通过测试一系列catp-1等位基因,我们发现对DMPP毒性的抗性和nekl缺陷的抑制并没有强烈的相关性,这表明catp-1介导的抑制机制存在关键差异。通过对其他nekl-2;nekl-3抑制菌株进行全基因组测序,我们在catp-1中鉴定出另外两个编码改变突变。然而,当使用CRISPR将这两个突变引入nekl-2;nekl-3突变体时,都不足以强烈抑制蜕皮缺陷,这表明其他基因座也参与其中。内源性标记的CATP-1主要在位于顶端质膜附近的点状结构中的表皮细胞中表达,这与它在调节表皮内细胞过程中的作用一致。基于先前的研究,我们测试了catp-1抑制诱导进入前滞育L2d阶段的假设,这可能解释了catp-1突变体抑制nekl蜕皮缺陷的能力。然而,我们没有发现catp-1缺失导致进入L2d的证据。因此,catp-1的缺失可能通过改变膜结合区室中的电化学梯度来抑制nekl相关和DMPP诱导的缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5efd/11631496/ac5bb1df468d/jkae244f1.jpg

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