首页> 外文期刊>Journal of cell biology >Flightin Is Essential for Thick Filament Assembly and Sarcomere Stability in Drosophila Flight Muscles
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Flightin Is Essential for Thick Filament Assembly and Sarcomere Stability in Drosophila Flight Muscles

机译:Flightin对于果蝇飞行肌肉中的长丝组装和Sarcomere稳定性至关重要。

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Flightin is a multiply phosphorylated, 20-kD myofibrillar protein found in Drosophila indirect flight muscles (IFM). Previous work suggests that flightin plays an essential, as yet undefined, role in normal sarcomere structure and contractile activity. Here we show that flightin is associated with thick filaments where it is likely to interact with the myosin rod. We have created a null mutation for flightin, fln , that results in loss of flight ability but has no effect on fecundity or viability. Electron microscopy comparing pupa and adult fln IFM shows that sarcomeres, and thick and thin filaments in pupal IFM, are 25–30% longer than in wild type. fln fibers are abnormally wavy, but sarcomere and myotendon structure in pupa are otherwise normal. Within the first 5 h of adult life and beginning of contractile activity, IFM fibers become disrupted as thick filaments and sarcomeres are variably shortened, and myofibrils are ruptured at the myotendon junction. Unusual empty pockets and granular material interrupt the filament lattice of adult fln sarcomeres. Site-specific cleavage of myosin heavy chain occurs during this period. That myosin is cleaved in the absence of flightin is consistent with the immunolocalization of flightin on the thick filament and biochemical and genetic evidence suggesting it is associated with the myosin rod. Our results indicate that flightin is required for the establishment of normal thick filament length during late pupal development and thick filament stability in adult after initiation of contractile activity.
机译:Flightin是果蝇间接飞行肌肉(IFM)中发现的20kD多肌磷酸肌原纤维蛋白。先前的研究表明,flightin在正常的肌节结构和收缩活动中起着至关重要的作用,但尚未定义。在这里,我们显示出Flightin与可能与肌球蛋白棒相互作用的粗丝有关。我们为Flightin创建了一个无效突变fln,该突变会导致飞行能力丧失,但对繁殖力或生存力没有影响。电子显微镜比较comparing和成年fln IFM表明,I IFM中的肉瘤和粗细细丝比野生型长25–30%。 fln纤维异常呈波浪状,但中的肌节和肌腱结构正常。在成年的头5小时内,开始收缩活动,随着粗丝和肉瘤的变短变短,IFM纤维被破坏,肌原纤维在肌腱连接处断裂。异常的空口袋和颗粒状物质中断了成年fln肉瘤的细丝晶格。在此期间,发生了肌球蛋白重链的位点特异性切割。在不存在flightin的情况下切割肌球蛋白与在厚丝上的flightin的免疫定位一致,并且生化和遗传证据表明它与肌球蛋白棒相关。我们的结果表明,flightin是在正常p发育过程中建立正常粗丝长度和在收缩活动开始后成人中粗丝稳定所需的。

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