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Developmental regulation of MURF ubiquitin ligases and autophagy proteins nbr1 p62/SQSTM1 and LC3 during cardiac myofibril assembly and turnover

机译:MURF泛素连接酶和自噬蛋白nbr1p62 / SQSTM1和LC3在心脏肌原纤维组装和更新过程中的发育调控

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摘要

The striated muscle-specific tripartite motif (TRIM) proteins TRIM63/MURF1, TRIM55/MURF2 and TRIM54/MURF3 can function as ubiquitin E3 ligases in ubiquitin-mediated muscle protein turnover. Despite their well-characterised roles in muscle atrophy, the dynamics of MURF expression in the development and early postnatal adaptation of striated muscle is largely unknown. Here, we show that MURF2 is expressed at the very onset of mouse cardiac differentiation at embryonic day 8.5, and represents a sensitive marker for differentiating myocardium. During cardiac development, expression shifts from the 50 kDa to the 60 kDa A-isoform, which dominates postnatally. In contrast, MURF1 shows strong postnatal upregulation and MURF3 is not significantly expressed before birth. MURF2 expression parallels that of the autophagy-associated proteins LC3, p62/SQSTM1 and nbr1. SiRNA knockdown of MURF2 in neonatal rat cardiomyocytes disrupts posttranslational microtubule modification and myofibril assembly, and is only partly compensated by upregulation of MURF3 but not MURF1. Knockdown of both MURF2 and MURF3 severely disrupts the formation of ordered Z- and M-bands, likely by perturbed tubulin dynamics. These results suggest that ubiquitin-mediated protein turnover and MURF2 in particular play an unrecognised role in the earliest steps of heart muscle differentiation, and that partial complementation of MURF2 deficiency is afforded by MURF3.
机译:横纹肌特定的三重基序(TRIM)蛋白TRIM63 / MURF1,TRIM55 / MURF2和TRIM54 / MURF3在泛素介导的肌肉蛋白更新中可以用作泛素E3连接酶。尽管它们在肌肉萎缩中具有很好的作用,但是在横纹肌的发育和出生后早期适应中,MURF表达的动力学仍然未知。在这里,我们显示MURF2在胚胎第8.5天小鼠心脏分化时就开始表达,并且代表分化心肌的敏感标记。在心脏发育过程中,表达从50 kDa的A型异构体转变为60 kDa的A型异构体,该异构体在出生后占主导地位。相反,MURF1显示出强烈的产后上调,而MURF3在出生前并未明显表达。 MURF2的表达与自噬相关蛋白LC3,p62 / SQSTM1和nbr1的表达平行。新生大鼠心肌细胞中MURF2的SiRNA敲低破坏了翻译后微管修饰和肌原纤维组装,仅通过MURF3的上调而得到部分补偿,而MURF1则不。击倒MURF2和MURF3都可能严重干扰微管蛋白的动力学,严重破坏有序Z和M带的形成。这些结果表明,泛素介导的蛋白质更新和MURF2在心肌分化的最早步骤中尤其发挥着无法识别的作用,而MURF2弥补了MURF2缺乏的部分补充。

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