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泛素连接酶 Ozz 降低肌原纤维中胚胎肌球蛋白的替换率。

The ubiquitin ligase Ozz decreases the replacement rate of embryonic myosin in myofibrils.

机构信息

Research Faculty of Agriculture, Graduate School of Agriculture, Hokkaido University, Sapporo, Japan.

Muscle Biology Research Unit, Division of Animal Products Research, Institute of Livestock and Grassland Science, NARO, Tsukuba, Japan.

出版信息

Physiol Rep. 2021 Sep;9(17):e15003. doi: 10.14814/phy2.15003.

Abstract

Myosin, the most abundant myofibrillar protein in skeletal muscle, functions as a motor protein in muscle contraction. Myosin polymerizes into the thick filaments in the sarcomere where approximately 50% of embryonic myosin (Myh3) are replaced within 3 h (Ojima K, Ichimura E, Yasukawa Y, Wakamatsu J, Nishimura T, Am J Physiol Cell Physiol 309: C669-C679, 2015). The sarcomere structure including the thick filament is maintained by a balance between protein biosynthesis and degradation. However, the involvement of a protein degradation system in the myosin replacement process remains unclear. Here, we show that the muscle-specific ubiquitin ligase Ozz regulates replacement rate of Myh3. To examine the direct effect of Ozz on myosin replacement, eGFP-Myh3 replacement rate was measured in myotubes overexpressing Ozz by fluorescence recovery after photobleaching. Ozz overexpression significantly decreased the replacement rate of eGFP-Myh3 in the myofibrils, whereas it had no effect on other myosin isoforms. It is likely that ectopic Ozz promoted myosin degradation through increment of ubiquitinated myosin, and decreased myosin supply for replacement, thereby reducing myosin replacement rate. Intriguingly, treatment with a proteasome inhibitor MG132 also decreased myosin replacement rate, although MG132 enhanced the accumulation of ubiquitinated myosin in the cytosol where replaceable myosin is pooled, suggesting that ubiquitinated myosin is not replaced by myosin in the myofibril. Collectively, our findings showed that Myh3 replacement rate was reduced in the presence of overexpressed Ozz probably through enhanced ubiquitination and degradation of Myh3 by Ozz.

摘要

肌球蛋白是骨骼肌中最丰富的肌丝蛋白,在肌肉收缩中作为一种运动蛋白发挥作用。肌球蛋白在肌节中聚合形成粗丝,其中大约 50%的胚胎肌球蛋白(Myh3)在 3 小时内被替换(Ojima K、Ichimura E、Yasukawa Y、Wakamatsu J、Nishimura T、Am J Physiol Cell Physiol 309:C669-C679,2015)。肌节结构包括粗丝,通过蛋白质生物合成和降解之间的平衡来维持。然而,蛋白质降解系统在肌球蛋白替换过程中的参与仍然不清楚。在这里,我们表明肌肉特异性泛素连接酶 Ozz 调节 Myh3 的替换率。为了研究 Ozz 对肌球蛋白替换的直接影响,通过光漂白后荧光恢复测量过表达 Ozz 的肌管中 eGFP-Myh3 的替换率。Ozz 的过表达显著降低了肌球蛋白纤维中 eGFP-Myh3 的替换率,而对其他肌球蛋白同工型没有影响。异位 Ozz 可能通过增加泛素化肌球蛋白促进肌球蛋白降解,并减少用于替换的肌球蛋白供应,从而降低肌球蛋白替换率。有趣的是,用蛋白酶体抑制剂 MG132 处理也降低了肌球蛋白替换率,尽管 MG132 增强了可替换肌球蛋白聚集的胞质中泛素化肌球蛋白的积累,表明泛素化肌球蛋白不能被肌球蛋白纤维中的肌球蛋白替换。总之,我们的研究结果表明,过表达的 Ozz 存在时,Myh3 的替换率降低,可能是通过 Ozz 增强了 Myh3 的泛素化和降解。

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