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Caenorhabditis elegans kettin, a large immunoglobulin-like repeat protein, binds to filamentous actin and provides mechanical stability to the contractile apparatuses in body wall muscle

机译:秀丽隐杆线虫kettin,一种大型的免疫球蛋白样重复蛋白,与丝状肌动蛋白结合并为体壁肌肉中的收缩装置提供机械稳定性

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Kettin is a large actin-binding protein with immunoglobulin-like (Ig) repeats, which is associated with the thin filaments in arthropod muscles. Here, we report identification and functional characterization of kettin in the nematode Caenorhabditis elegans. We found that one of the monoclonal antibodies that were raised against C. elegans muscle proteins specifically reacts with kettin (Ce-kettin). We determined the entire cDNA sequence of Ce-kettin that encodes a protein of 472 kDa with 31 Ig repeats. Arthropod kettins are splice variants of much larger connectin/titin-related proteins. However, the gene for Ce-kettin is independent of other connectin/titin-related genes. Ce-kettin localizes to the thin filaments near the dense bodies in both striated and nonstriated muscles. The C-terminal four Ig repeats and the adjacent non-Ig region synergistically bind to actin filaments in vitro. RNA interference of Ce-kettin caused weak disorganization of the actin filaments in body wall muscle. This phenotype was suppressed by inhibiting muscle contraction by a myosin mutation, but it was enhanced by tetramisole-induced hypercontraction. Furthermore, Ce-kettin was involved in organizing the cytoplasmic portion of the dense bodies in cooperation with alpha-actinin. These results suggest that kettin is an important regulator of myofibrillar organization and provides mechanical stability to the myofibrils during contraction.
机译:Kettin是一种大型肌动蛋白结合蛋白,具有类似免疫球蛋白(Ig)的重复序列,与节肢动物肌肉中的细丝有关。在这里,我们报告线虫秀丽隐杆线虫中的kettin的鉴定和功能表征。我们发现,针对秀丽隐杆线虫肌肉蛋白产生的单克隆抗体之一会与酮汀(Ce-kettin)发生特异性反应。我们确定了Ce-kettin的完整cDNA序列,该序列编码具有31 Ig重复的472 kDa蛋白。节肢动物kettins是更大的connectin / titin相关蛋白的剪接变体。但是,Ce-kettin的基因独立于其他connectin / titin相关基因。 Ce-kettin位于横纹肌和非横纹肌中致密体附近的细丝。 C端的四个Ig重复序列和相邻的非Ig区域在体外协同结合肌动蛋白丝。 Ce-kettin的RNA干扰导致体壁肌肉中肌动蛋白丝的弱分解。该表型通过抑制肌球蛋白突变引起的肌肉收缩而得到抑制,但通过丁苯甲醚诱导的过度收缩得到增强。此外,Ce-kettin与α-actinin参与组织致密体的胞质部分。这些结果表明,酮丁是肌原纤维组织的重要调节剂,并在收缩期间为肌原纤维提供机械稳定性。

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