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脂质代谢的内分泌调控

Endocrine Control of Lipid Metabolism.

作者信息

Krishnan Natraj

机构信息

Department of Biochemistry, Molecular Biology, Entomology and Plant Pathology, Mississippi State University, Mississippi State, MS, USA.

出版信息

Adv Exp Med Biol. 2024 May 24. doi: 10.1007/5584_2024_807.

Abstract

Lipids are essential in insects and play pleiotropic roles in energy storage, serving as a fuel for energy-driven processes such as reproduction, growth, development, locomotion, flight, starvation response, and diapause induction, maintenance, and termination. Lipids also play fundamental roles in signal transduction, hormone synthesis, forming components of the cell membrane, and thus are essential for maintenance of normal life functions. In insects, the neuroendocrine system serves as a master regulator of most life activities, including growth and development. It is thus important to pay particular attention to the regulation of lipid metabolism through the endocrine system, especially when considering the involvement of peptide hormones in the processes of lipogenesis and lipolysis. In insects, there are several lipogenic and lipolytic hormones that are involved in lipid metabolism such as insulin-like peptides (ILPs), adipokinetic hormone (AKH), 20-hydroxyecdysone (20-HE), juvenile hormone (JH), and serotonin. Other neuropeptides such as diapause hormone-pheromone biosynthesis activating neuropeptide (DH-PBAN), CCHamide-2, short neuropeptide F, and the cytokines Unpaired 1 and 2 may play a role in inducing lipogenesis. On the other hand, neuropeptides such as neuropeptide F, allatostatin-A, corazonin, leukokinin, tachykinins, limostatins, and insulin-like growth factor (ILP6) stimulate lipolysis. This chapter briefly discusses the current knowledge of the endocrine regulation of lipid metabolism in insects that could be utilized to reveal differences between insects and mammalian lipid metabolism which may help understand human diseases associated with dysregulation of lipid metabolism. Physiological similarities of insects to mammals make them valuable model systems for studying human diseases characterized by disrupted lipid metabolism, including conditions like diabetes, obesity, arteriosclerosis, and various metabolic syndromes.

摘要

脂质在昆虫体内至关重要,在能量储存中发挥多效性作用,为繁殖、生长、发育、运动、飞行、饥饿反应以及滞育诱导、维持和终止等能量驱动过程提供燃料。脂质在信号转导、激素合成以及构成细胞膜成分方面也发挥着重要作用,因此对于维持正常生命功能必不可少。在昆虫中,神经内分泌系统是包括生长和发育在内的大多数生命活动的主要调节者。因此,特别关注通过内分泌系统对脂质代谢的调节非常重要,尤其是考虑到肽类激素在脂肪生成和脂肪分解过程中的作用时。在昆虫中,有几种参与脂质代谢的脂肪生成和脂肪分解激素,如胰岛素样肽(ILPs)、促脂动激素(AKH)、20-羟基蜕皮激素(20-HE)、保幼激素(JH)和血清素。其他神经肽,如滞育激素-信息素生物合成激活神经肽(DH-PBAN)、CCHamide-2、短神经肽F以及细胞因子未配对蛋白1和2可能在诱导脂肪生成中发挥作用。另一方面,神经肽如神经肽F、咽侧体抑制素-A、心钠素、白细胞激肽、速激肽、限食素和胰岛素样生长因子(ILP6)刺激脂肪分解。本章简要讨论了昆虫脂质代谢内分泌调节的现有知识,这些知识可用于揭示昆虫与哺乳动物脂质代谢之间的差异,这可能有助于理解与脂质代谢失调相关的人类疾病。昆虫与哺乳动物的生理相似性使其成为研究以脂质代谢紊乱为特征的人类疾病的有价值模型系统,包括糖尿病、肥胖症、动脉硬化和各种代谢综合征等病症。

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