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保守bHLH家族成员的功能分析揭示了肽能中枢神经元对寿命的控制。

Functional analysis of conserved bHLH family members uncovers lifespan control by a peptidergic hub neuron.

作者信息

Aguilar G Robert, Vidal Berta, Ji Hongzhu, Evenblij Joke, Ji Hongfei, Valperga Giulio, Liao Chien-Po, Fang-Yen Christopher, Hobert Oliver

机构信息

Department of Biological Sciences, Howard Hughes Medical Institute, Columbia University, New York, NY.

Technische Universität, Braunschweig, Germany.

出版信息

bioRxiv. 2024 Jul 16:2024.07.12.603289. doi: 10.1101/2024.07.12.603289.

Abstract

Throughout the animal kingdom, several members of the basic helix-loop-helix (bHLH) family act as proneural genes during early steps of nervous system development. Roles of bHLH genes in specifying terminal differentiation of postmitotic neurons have been less extensively studied. We analyze here the function of five bHLH genes, falling into three phylogenetically conserved subfamilies, which are continuously expressed in a very small number of postmitotic neurons in the central nervous system. We show (a) that two orthologs of the vertebrate bHLHb4/b5 genes, called and , function redundantly to specify the identity of a single head interneuron (AUA), as well as an individual motor neuron (VB2), (b) that the ortholog acts as a terminal selector to control terminal differentiation and function of the sole octopaminergic neuron class in , RIC, and (c) that the NHLH1/2 ortholog controls terminal differentiation and function of the peptidergic AVK head interneuron class, a known neuropeptidergic signaling hub in the animal. Strikingly, through null mutant analysis and cell-specific rescue experiments, we find that loss of in the peptidergic AVK neurons and the resulting abrogation of neuropeptide secretion causes a substantially expanded lifespan of the animal, revealing an unanticipated impact of a central, peptidergic hub neuron in regulating lifespan, which we propose to be akin to hypothalamic control of lifespan in vertebrates. Taken together, our functional analysis reveals themes of bHLH gene function during terminal differentiation that are complementary to the earlier lineage specification roles of other bHLH family members. However, such late functions are much more sparsely employed by members of the bHLH transcription factor family, compared to the function of the much more broadly employed homeodomain transcription factor family.

摘要

在整个动物界,碱性螺旋-环-螺旋(bHLH)家族的几个成员在神经系统发育的早期阶段作为神经源性基因发挥作用。bHLH基因在确定有丝分裂后神经元的终末分化中的作用尚未得到广泛研究。我们在此分析了五个bHLH基因的功能,它们分为三个系统发育保守的亚家族,在中枢神经系统中极少数有丝分裂后神经元中持续表达。我们发现:(a)脊椎动物bHLHb4/b5基因的两个直系同源基因,称为 和 ,以冗余方式发挥作用,确定单个头部中间神经元(AUA)以及单个运动神经元(VB2)的身份;(b)直系同源基因 作为终末选择因子,控制秀丽隐杆线虫中唯一的章鱼胺能神经元类RIC的终末分化和功能;(c)NHLH1/2直系同源基因 控制肽能AVK头部中间神经元类的终末分化和功能,AVK是动物中已知的神经肽信号枢纽。令人惊讶的是,通过无效突变分析和细胞特异性拯救实验,我们发现肽能AVK神经元中 的缺失以及由此导致的神经肽分泌的消除会使动物的寿命大幅延长,揭示了一个中央肽能枢纽神经元在调节寿命方面的意外影响,我们认为这类似于脊椎动物中下丘脑对寿命的控制。综上所述,我们的功能分析揭示了bHLH基因在终末分化过程中的功能主题,这些主题与其他bHLH家族成员早期的谱系特化作用互补。然而,与更广泛应用的同源域转录因子家族的功能相比,bHLH转录因子家族成员对这种后期功能的应用要少得多。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46b1/11275782/79a6c7f66344/nihpp-2024.07.12.603289v1-f0001.jpg

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