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首页> 外文期刊>Molecular biology of the cell >The Rho-guanine nucleotide exchange factor domain of obscurin regulates assembly of titin at the Z-disk through interactions with Ran binding protein 9
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The Rho-guanine nucleotide exchange factor domain of obscurin regulates assembly of titin at the Z-disk through interactions with Ran binding protein 9

机译:obscurin的Rho鸟嘌呤核苷酸交换因子结构域通过与Ran结合蛋白9的相互作用调节Z盘上的titin组装

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Obscurin is an similar to 800-kDa protein composed of structural and signaling domains that organizes contractile structures in striated muscle. We have studied the Rho-GEF domain of obscurin to understand its roles in morphogenesis and signaling. We used adenoviral overexpression of this domain, together with ultrastructural and immunofluorescence methods, to examine its effect on maturing myofibrils. We report that overexpression of the Rho-GEF domain specifically inhibits the incorporation of titin into developing Z-disks and disrupts the structure of the Z-disk and Z/I junction, and alters features of the A/I junction. The organization of other sarcomeric markers, including alpha-actinin, was not affected. We identified Ran binding protein 9 (RanBP9) as a novel ligand of the Rho-GEF domain and showed that binding is specific, with an apparent binding affinity of 1.9 mu M. Overexpression of the binding region of RanBP9 also disrupted the incorporation of titin into developing Z-disks. Immunofluorescence localization during myofibrillogenesis indicated that the Rho-GEF domain assembles into sarcomeres before RanBP9, which first occurs in myonuclei and later in development translocates to the myoplasm, where it colocalizes with obscurin. Both the Rho-GEF domain and its binding region on RanBP9 bind directly to the N-terminal Ig domains of titin, which flank the Z-disk. Our results suggest that the Rho-GEF domain interacts with RanBP9 and that both can interact with the N-terminal region of titin to influence the formation of the Z-disk and A/I junction.
机译:Obscurin与由结构域和信号域组成的800 kDa蛋白质相似,可组织横纹肌的收缩结构。我们已经研究了obscurin的Rho-GEF域,以了解其在形态发生和信号传导中的作用。我们使用该结构域的腺病毒过表达,以及超微结构和免疫荧光方法,来研究其对成熟肌原纤维的影响。我们报告说,Rho-GEF结构域的过度表达会特异性地抑制titin掺入正在发展的Z盘中,并破坏Z盘和Z / I结的结构,并改变A / I结的特征。其他肌节标记物的组织,包括α-肌动蛋白,不受影响。我们确定Ran结合蛋白9(RanBP9)为Rho-GEF域的新型配体,并显示结合是特异性的,具有1.9μM的表观结合亲和力。RanBP9结合区的过表达也破坏了tatin的掺入开发Z盘。肌原纤维形成过程中的免疫荧光定位表明,Rho-GEF结构域在RanBP9之前组装成肉瘤,RanBP9首先出现在肌核中,然后在发育过程中转移到肌浆中,在该处与暗抑素共定位。 Rho-GEF结构域及其在RanBP9上的结合区都直接结合到titin的N末端Ig结构域,后者位于Z盘侧面。我们的结果表明,Rho-GEF结构域与RanBP9相互作用,并且两者都可以与titin的N端区域相互作用,从而影响Z盘和A / I连接的形成。

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