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Parvin对于黑腹果蝇的间接飞行肌(IFM)性能以及Zasp52定位于Z盘至关重要。

Parvin is essential for indirect flight muscle (IFM) performance and Zasp52 localisation to the Z-disc in Drosophila melanogaster.

作者信息

Ain Ushashi, Fatma Benazir, Firdaus Hena

机构信息

Department of Life Sciences, Central University of Jharkhand, Cheri-Manatu Campus, Ranchi, Jharkhand, 835222, India.

出版信息

Cell Tissue Res. 2025 Sep 3. doi: 10.1007/s00441-025-04007-8.

Abstract

The integrin-associated proteins (IAPs) function in a tightly regulated and coordinated manner to maintain the complex cytoarchitecture at the myotendinous junctions (MTJs) of Drosophila indirect flight muscles (IFMs). Parvin, a conserved but less explored IAP, forms a ternary complex with ILK and PINCH (the IPP complex). Although the IPP complex is functionally conserved, playing a central role in integrin-mediated adhesion, its individual components may also exert independent roles. The present study investigates parvin as a critical regulator of IFM function and sarcomeric integrity. Downregulation of parvin in IFM leads to altered sarcomere organisation and lowered accumulation of essential thin filament genes, including Act88F, wupA, up, TpnC4, and TM2 transcripts. Furthermore, Z-disc-associated proteins such as Zasp52 and its binding partner α-actinin, which are vital for myofibril stability, showed markedly reduced expression in parvin-deficient muscles. Notably, Zasp52 failed to localise to the Z-discs in IFMs, despite being detectable in leg muscles, suggesting tissue-specific mislocalisation. The expression of sallimus, a titin orthologue contributing to muscle elasticity, remained unchanged. Our findings underscore parvin's essential role in preserving IFM ultrastructure and function. We also emphasise the importance of maintaining the stoichiometric balance within the IPP complex-including its extended member Ras suppressor 1 (RSU1)-for proper muscle performance. Additionally, perturbation of parvin expression in a tissue-specific manner revealed its broader role in fly viability and muscle-driven behaviours, including larval locomotion and leg muscle function. Collectively, this study positions parvin as a pivotal component in maintaining muscle integrity across multiple muscle types in Drosophila.

摘要

整合素相关蛋白(IAPs)以严格调控和协调的方式发挥作用,以维持果蝇间接飞行肌(IFM)肌腱连接(MTJ)处复杂的细胞结构。Parvin是一种保守但研究较少的IAP,它与整合素连接激酶(ILK)和PINCH形成三元复合物(IPP复合物)。尽管IPP复合物在功能上是保守的,在整合素介导的黏附中起核心作用,但其各个组分也可能发挥独立作用。本研究将Parvin作为IFM功能和肌节完整性的关键调节因子进行研究。IFM中Parvin的下调导致肌节组织改变,以及包括Act88F、wupA、up、TpnC4和TM2转录本在内的必需细肌丝基因的积累减少。此外,对肌原纤维稳定性至关重要的Z盘相关蛋白,如Zasp52及其结合伴侣α-辅肌动蛋白,在Parvin缺陷型肌肉中的表达显著降低。值得注意的是,尽管在腿部肌肉中可检测到Zasp52,但它在IFM中未能定位于Z盘,提示组织特异性定位错误。肌联蛋白同源物sallimus对肌肉弹性有贡献,其表达保持不变。我们的研究结果强调了Parvin在维持IFM超微结构和功能方面的重要作用。我们还强调了维持IPP复合物(包括其扩展成员Ras抑制因子1,RSU1)内化学计量平衡对正常肌肉功能的重要性。此外,以组织特异性方式干扰Parvin的表达揭示了其在果蝇生存能力和肌肉驱动行为(包括幼虫运动和腿部肌肉功能)中的更广泛作用。总的来说,本研究将Parvin定位为维持果蝇多种肌肉类型肌肉完整性的关键组分。

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