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obscurin 调节锚蛋白大分子复合物的形成。

Obscurin regulates ankyrin macromolecular complex formation.

机构信息

Department of Integrative Biology and Pharmacology, University of Texas Health Science Center at Houston, Houston, TX 77030, United States of America.

Department of Integrative Biology and Pharmacology, University of Texas Health Science Center at Houston, Houston, TX 77030, United States of America.

出版信息

J Mol Cell Cardiol. 2022 Jul;168:44-57. doi: 10.1016/j.yjmcc.2022.04.008. Epub 2022 Apr 18.

Abstract

Obscurin is a large scaffolding protein in striated muscle that maintains sarcolemmal integrity and aligns the sarcoplasmic reticulum with the underlying contractile machinery. Ankyrins are a family of adaptor proteins with some isoforms that interact with obscurin. Previous studies have examined obscurin interacting with individual ankyrins. In this study, we demonstrate that two different ankyrins interact with obscurin's carboxyl terminus via independent ankyrin-binding domains (ABDs). Using in-vitro binding assays, co-precipitation assays, and FLIM-FRET analysis, we show that obscurin interacts with small ankyrin 1.5 (sAnk1.5) and the muscle-specific ankyrin-G isoform (AnkG107). While there is no direct interaction between sAnk1.5 and AnkG107, obscurin connects the two ankyrins both in vitro and in cells. Moreover, AnkG107 recruits β-spectrin to this macromolecular protein complex and mutating obscurin's ABDs disrupts complex formation. To further characterize AnkG107 interaction with obscurin, we measure obscurin-binding to different AnkG107 isoforms expressed in the heart and find that the first obscurin-binding domain in AnkG107 principally mediates this interaction. We also find that AnkG107 does not bind to filamin-C and displays minimal binding to plectin-1 compared to obscurin. Finally, both sAnk1.5-GFP and AnkG107-CTD-RFP are targeted to the M-lines of ventricular cardiomyocytes and mutating their obscurin-binding domains disrupts the M-line localization of these ankyrin constructs. Altogether, these findings support a model in which obscurin can interact via independent binding domains with two different ankyrin protein complexes to target them to the sarcomeric M-line of ventricular cardiomyocytes.

摘要

obscurin 是一种存在于横纹肌中的大型支架蛋白,它维持着肌膜的完整性,并使肌浆网与下面的收缩机制对齐。锚蛋白是一类衔接蛋白家族,其中一些亚型与 obscurin 相互作用。以前的研究已经检查了 obscurin 与单个锚蛋白的相互作用。在这项研究中,我们证明了两种不同的锚蛋白通过独立的锚蛋白结合域 (ABDs) 与 obscurin 的羧基末端相互作用。通过体外结合测定、共沉淀测定和 FLIM-FRET 分析,我们表明 obscurin 与小锚蛋白 1.5 (sAnk1.5) 和肌肉特异性锚蛋白-G 同工型 (AnkG107) 相互作用。虽然 sAnk1.5 和 AnkG107 之间没有直接相互作用,但 obscurin 在体外和细胞内将这两种锚蛋白连接起来。此外,AnkG107 将 β- spectrin 募集到这个大分子蛋白复合物中,并且突变 obscurin 的 ABDs 会破坏复合物的形成。为了进一步表征 AnkG107 与 obscurin 的相互作用,我们测量了 obscurin 与在心脏中表达的不同 AnkG107 同工型的结合,发现 AnkG107 中的第一个 obscurin 结合域主要介导这种相互作用。我们还发现,与 obscurin 相比,AnkG107 不与 filamin-C 结合,与 plectin-1 的结合也很少。最后,sAnk1.5-GFP 和 AnkG107-CTD-RFP 都被靶向到心室肌细胞的 M 线,并且突变它们的 obscurin 结合域会破坏这些锚蛋白构建体的 M 线定位。总之,这些发现支持了这样一种模型,即 obscurin 可以通过独立的结合域与两种不同的锚蛋白复合物相互作用,将它们靶向到心室肌细胞的肌节 M 线。

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