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果蝇NUAK或组成型活性formin样蛋白的过表达促进异常肌原纤维的形成。

Overexpression of Drosophila NUAK or Constitutively-Active Formin-Like Promotes the Formation of Aberrant Myofibrils.

作者信息

Tiwari Prabhat, Brooks David, Geisbrecht Erika R

机构信息

Department of Biochemistry and Molecular Biophysics, Kansas State University, Manhattan, Kansas, USA.

出版信息

Cytoskeleton (Hoboken). 2025 Jan 29. doi: 10.1002/cm.21999.

Abstract

Muscle development and maintenance is central to the normal functioning of animals. Muscle tissues exhibit high levels of activity and require the dynamic turnover of proteins. An actomyosin scaffold functions with additional proteins comprising the basic contractile subunit of striated muscle, known as the sarcomere. Drosophila muscles are similar to vertebrate muscles in composition and they share a similar mechanism of development. Drosophila NUAK (NUAK) is the homolog of NUAK1 and NUAK2 in vertebrates. NUAK belongs to the family of AMP-activated protein kinases (AMPKs), a group of proteins with broad and overlapping cellular targets. Here we confirm that NUAK dynamically modulates larval muscle sarcomere size as upregulation of NUAK produces longer sarcomeres, including increased thin filament lengths. Furthermore, NUAK overexpression results in aberrant myofibers above the nuclei plane, upregulation of Formin-like (Frl), and an increase in newly synthesized proteins at sites consistent with actin filament assembly. Expression of constitutively-active Frl also produces aberrant myofibers similar to NUAK overexpression. These results taken together strongly suggest a functional link between NUAK and Frl in myofibril formation in an in vivo setting.

摘要

肌肉发育和维持对于动物的正常功能至关重要。肌肉组织具有高水平的活性,并且需要蛋白质的动态更新。肌动球蛋白支架与构成横纹肌基本收缩亚基(即肌节)的其他蛋白质一起发挥作用。果蝇的肌肉在组成上与脊椎动物的肌肉相似,并且它们具有相似的发育机制。果蝇NUAK(NUAK)是脊椎动物中NUAK1和NUAK2的同源物。NUAK属于AMP激活的蛋白激酶(AMPK)家族,这是一组具有广泛且重叠的细胞靶点的蛋白质。在这里,我们证实NUAK动态调节幼虫肌肉肌节大小,因为NUAK的上调会产生更长的肌节,包括增加细肌丝长度。此外,NUAK的过表达导致核平面上方出现异常肌纤维,Formin样(Frl)上调,并在与肌动蛋白丝组装一致的位点增加新合成的蛋白质。组成型活性Frl的表达也会产生与NUAK过表达相似的异常肌纤维。综合这些结果强烈表明,在体内环境中,NUAK和Frl在肌原纤维形成中存在功能联系。

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