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pkc-1 regulates daf-2 insulin/IGF signalling-dependent control of dauer formation in Caenorhabditis elegans

机译:pkc-1调节秀丽隐杆线虫中dauer形成的daf-2胰岛素/ IGF信号传导依赖性控制

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In Caenorhabditis elegans, the insulin/IGF pathway participates in the decision to initiate dauer development. Dauer is a diapause stage that is triggered by environmental stresses, such as a lack of nutrients. Insulin/IGF receptor mutants arrest constitutively in dauer, an effect that can be suppressed by mutations in other elements of the insulin/IGF pathway or by a reduction in the activity of the nuclear hormone receptor daf-12. We have isolated a pkc-1 mutant that acts as a novel suppressor of the dauer phenotypes caused by insulin/IGF receptor mutations. Interactions between insulin/IGF mutants and the pkc-1 suppressor mutant are similar to those described for daf-12 or the DAF-12 coregulator din-1. Moreover, we show that the expression of the DAF-12 target daf-9, which is normally elevated upon a reduction in insulin/IGF receptor activity, is suppressed in a pkc-1 mutant background, suggesting that pkc-1 could link the daf-12 and insulin/IGF pathways. pkc-1 has been implicated in the regulation of peptide neurosecretion in C.?elegans. Although we demonstrate that pkc-1 expression in the nervous system regulates dauer formation, our results suggest that the requirement for pkc-1 in neurosecretion is independent of its role in modulating insulin/IGF signalling. pkc-1 belongs to the novel protein kinase C (nPKC) family, members of which have been implicated in insulin resistance and diabetes in mammals, suggesting a conserved role for pkc-1 in the regulation of the insulin/IGF pathway.
机译:在秀丽隐杆线虫中,胰岛素/ IGF途径参与启动dauer发育的决定。 Dauer是一个滞育阶段,由环境压力(例如缺乏营养)触发。胰岛素/ IGF受体突变体在dauer中组成性停止,这种作用可以通过胰岛素/ IGF途径其他元素的突变或核激素受体daf-12活性的降低来抑制。我们已经分离出一个pkc-1突变体,该突变体可作为胰岛素/ IGF受体突变引起的dauer表型的新型抑制剂。胰岛素/ IGF突变体与pkc-1抑制突变体之间的相互作用类似于daf-12或DAF-12核心调节剂din-1所述的相互作用。此外,我们表明在pkc-1突变体背景中,通常会在胰岛素/ IGF受体活性降低后正常升高的DAF-12目标daf-9的表达受到抑制,这表明pkc-1可以与daf连接-12和胰岛素/ IGF途径。 pkc-1与秀丽隐杆线虫中肽神经分泌的调节有关。尽管我们证明了pkc-1在神经系统中的表达可调节dauer的形成,但我们的结果表明,神经分泌中pkc-1的需求与其调节胰岛素/ IGF信号的作用无关。 pkc-1属于新型蛋白激酶C(nPKC)家族,其成员与哺乳动物的胰岛素抵抗和糖尿病有关,提示pkc-1在调节胰岛素/ IGF途径中起着保守的作用。

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