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几丁质去乙酰化酶对于昆虫股骨肌肉的附着和运动是必需的。

Chitin deacetylases are necessary for insect femur muscle attachment and mobility.

机构信息

Department of Applied Biology, Chonnam National University, Gwangju 61186, South Korea.

Department of Forest Resources, AgriBio Institute of Climate Change Management, Chonnam National University, Gwangju 61186, South Korea.

出版信息

Proc Natl Acad Sci U S A. 2022 Jun 14;119(24):e2120853119. doi: 10.1073/pnas.2120853119. Epub 2022 Jun 8.

DOI:10.1073/pnas.2120853119
PMID:35675426
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9214514/
Abstract

Muscle attachment sites (MASs, apodemes) in insects and other arthropods involve specialized epithelial cells, called tendon cells or tenocytes, that adhere to apical extracellular matrices containing chitin. Here, we have uncovered a function for chitin deacetylases (CDAs) in arthropod locomotion and muscle attachment using a double-stranded RNA-mediated gene-silencing approach targeted toward specific CDA isoforms in the red flour beetle, (). Depletion of TcCDA1 or the alternatively spliced TcCDA2 isoform, TcCDA2a, resulted in internal tendon cuticle breakage at the femur-tibia joint, muscle detachment from both internal and external tendon cells, and defective locomotion. TcCDA deficiency did not affect early muscle development and myofiber growth toward the cuticular MASs but instead resulted in aborted microtubule development, loss of hemiadherens junctions, and abnormal morphology of tendon cells, all features consistent with a loss of tension within and between cells. Moreover, simultaneous depletion of TcCDA1 or TcCDA2a and the zona pellucida domain protein, TcDumpy, prevented the internal tendon cuticle break, further supporting a role for force-dependent interactions between muscle and tendon cells. We propose that in , the absence of -acetylglucosamine deacetylation within chitin leads to a loss of microtubule organization and reduced membrane contacts at MASs in the femur, which adversely affect musculoskeletal connectivity, force transmission, and physical mobility.

摘要

昆虫和其他节肢动物的肌肉附着位点 (MASs,翼片) 涉及专门的上皮细胞,称为肌腱细胞或 tenocytes,它们附着在含有几丁质的顶端细胞外基质上。在这里,我们使用靶向红粉甲虫 ( ) 中特定 CDA 同工型的双链 RNA 介导的基因沉默方法,揭示了几丁质脱乙酰酶 (CDAs) 在节肢动物运动和肌肉附着中的作用。TcCDA1 或剪接异构体 TcCDA2a 的耗竭导致股骨-胫骨关节处内部肌腱外皮断裂、肌肉从内部和外部肌腱细胞上脱离以及运动功能缺陷。TcCDA 缺乏不影响早期肌肉发育和肌纤维向角质 MASs 的生长,但会导致微管发育中断、半桥粒连接丢失以及肌腱细胞形态异常,所有这些特征都与细胞内和细胞间张力丧失一致。此外,同时耗尽 TcCDA1 或 TcCDA2a 和透明带域蛋白 TcDumpy 可防止内部肌腱外皮断裂,进一步支持肌肉和肌腱细胞之间依赖力的相互作用的作用。我们提出,在 中,几丁质内 -乙酰葡萄糖胺脱乙酰作用的缺失导致微管组织的丧失和股骨 MAS 处的膜接触减少,这会对肌肉骨骼连接、力传递和身体活动能力产生不利影响。

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: A Model Insect for Fundamental and Applied Research.一种用于基础和应用研究的模式昆虫。
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Group I CDAs are responsible for a selective CHC-independent cuticular barrier in Locusta migratoria.I 组 CDAs 负责在飞蝗中形成一种选择性的、不依赖于 CHC 的表皮屏障。
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RNA interference-mediated functional characterization of Group I chitin deacetylases in Holotrichia parallela Motschulsky.
RNA 干扰介导的斜纹夜蛾组 I 几丁质去乙酰酶功能特征分析。
Pestic Biochem Physiol. 2021 Mar;173:104770. doi: 10.1016/j.pestbp.2021.104770. Epub 2021 Jan 8.
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An overall look at insect chitin deacetylases: Promising molecular targets for developing green pesticides.昆虫几丁质脱乙酰酶综述:开发绿色农药的潜在分子靶点
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