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昆虫甲壳质/壳聚糖基质中弹性蛋白的时空分布和遗传背景及其对运动的功能意义。

Spatio-temporal distribution and genetic background of elastic proteins inside the chitin/chitosan matrix of insects including their functional significance for locomotion.

机构信息

Fritz-Olaf Lehmann, Department of Animal Physiology, University of Rostock, Albert-Einstein-Str. 3, 18059, Rostock, Germany.

Stanislav Gorb, Functional Morphology and Biomechanics, Kiel University, Am Botanischen Garten 1-9, 24118, Kiel, Germany.

出版信息

Insect Biochem Mol Biol. 2024 May;168:104089. doi: 10.1016/j.ibmb.2024.104089. Epub 2024 Mar 12.

Abstract

In insects, cuticle proteins interact with chitin and chitosan of the exoskeleton forming crystalline, amorphic or composite material structures. The biochemical and mechanical composition of the structure defines the cuticle's physical properties and thus how the insect cuticle behaves under mechanical stress. The tissue-specific ratio between chitin and chitosan and its pattern of deacetylation are recognized and interpreted by cuticle proteins depending on their local position in the body. Despite previous research, the assembly of the cuticle composites in time and space including its functional impact is widely unexplored. This review is devoted to the genetics underlying the temporal and spatial distribution of elastic proteins and the potential function of elastic proteins in insects with a focus on Resilin in the fruit fly Drosophila. The potential impact and function of localized patches of elastic proteins is discussed for movements in leg joints, locomotion and damage resistance of the cuticle. We conclude that an interdisciplinary research approach serves as an integral example for the molecular mechanisms of generation and interpretation of the chitin/chitosan matrix, not only in Drosophila but also in other arthropod species, and might help to synthesize artificial material composites.

摘要

在昆虫中,表皮蛋白与外骨骼的几丁质和壳聚糖相互作用,形成结晶、无定形或复合材料结构。结构的生化和机械组成决定了表皮的物理性质,从而决定了昆虫表皮在机械应力下的行为。表皮蛋白根据其在体内的局部位置,识别和解释几丁质和壳聚糖之间的组织特异性比例及其脱乙酰化模式。尽管进行了先前的研究,但包括其功能影响在内的表皮复合材料在时间和空间上的组装仍然广泛未被探索。本综述致力于研究弹性蛋白的时空分布的遗传学基础,以及弹性蛋白在昆虫中的潜在功能,重点是果蝇中的 Resilin。讨论了弹性蛋白局部斑块在腿部关节运动、表皮的运动和损伤抗性中的潜在影响和功能。我们得出结论,跨学科研究方法为生成和解释几丁质/壳聚糖基质的分子机制提供了一个整体范例,不仅在果蝇中,而且在其他节肢动物物种中,也可能有助于合成人工材料复合材料。

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