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AKH信号通路在[具体生物名称未给出]中以营养依赖的方式改变幼虫发育,进而影响成虫代谢。

AKH Signaling in Alters Larval Development in a Nutrient-Dependent Manner That Influences Adult Metabolism.

作者信息

Hughson Bryon N, Shimell MaryJane, O'Connor Michael B

机构信息

Department of Ecology and Evolutionary Biology, University of Toronto, Toronto, ON, Canada.

Department of Genetics, Cell Biology and Development, University of Minnesota, Minneapolis, MN, United States.

出版信息

Front Physiol. 2021 Feb 23;12:619219. doi: 10.3389/fphys.2021.619219. eCollection 2021.

Abstract

Metabolism, growth, and development are intrinsically linked, and their coordination is dependent upon inter-organ communication mediated by anabolic, catabolic, and steroid hormones. In , the corpora cardiaca (CC) influences metabolic homeostasis through adipokinetic hormone (AKH) signaling. AKH has glucagon-like properties and is evolutionarily conserved in mammals as the gonadotropin-releasing hormone, but its role in insect development is unknown. Here we report that AKH signaling alters larval development in a nutrient stress-dependent manner. This activity is regulated by the locus , which encodes a cGMP-dependent protein kinase (PKG). CC-specific downregulation of expression delayed the developmental transition from larval to pupal life, and altered adult metabolism and behavior. These developmental effects were AKH-dependent, and were observed only in flies that experienced low nutrient stress during larval development. Calcium-mediated vesicle exocytosis regulates ecdysteroid secretion from the prothoracic gland (PG), and we found that AKH signaling increased cytosolic free calcium levels in the PG. We identified a novel pathway through which PKG acts in the CC to communicate metabolic information to the PG via AKH signaling. AKH signaling provides a means whereby larval nutrient stress can alter developmental trajectories into adulthood.

摘要

新陈代谢、生长和发育内在相关,它们的协调依赖于由合成代谢、分解代谢和类固醇激素介导的器官间通讯。在[具体昆虫名称未给出]中,心侧体(CC)通过脂肪动激素(AKH)信号传导影响代谢稳态。AKH具有类胰高血糖素特性,在哺乳动物中作为促性腺激素释放激素在进化上保守,但它在昆虫发育中的作用尚不清楚。在此我们报告,AKH信号传导以营养应激依赖的方式改变幼虫发育。这种活性受[基因名称未给出]位点调控,该位点编码一种环鸟苷酸依赖性蛋白激酶(PKG)。CC特异性下调[基因名称未给出]表达延迟了从幼虫到蛹期的发育转变,并改变了成虫的代谢和行为。这些发育效应依赖于AKH,且仅在幼虫发育期间经历低营养应激的果蝇中观察到。钙介导的囊泡胞吐作用调节前胸腺(PG)中蜕皮甾类的分泌,并且我们发现AKH信号传导增加了PG中的胞质游离钙水平。我们鉴定出一条新途径,PKG通过该途径在心侧体中发挥作用,经由AKH信号传导将代谢信息传递给前胸腺。AKH信号传导提供了一种方式,通过它幼虫营养应激可改变发育轨迹直至成年期。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/981d/7940354/2858c956c61d/fphys-12-619219-g001.jpg

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