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SH1螺旋中的突变会改变肌球蛋白II的热性质。

Mutations in the SH1 helix alter the thermal properties of myosin II.

作者信息

Shibata Kotomi, Koyama Tsubasa, Inde Shohei, Iwai Sosuke, Chaen Shigeru

机构信息

Department of Biosciences, College of Humanities and Sciences, Nihon University, Setagaya-ku, Tokyo 156-8550, Japan.

Department of Biology, Faculty of Education, Hirosaki University, Hirosaki, Aomori 036-8560, Japan.

出版信息

Biophys Physicobiol. 2017 May 31;14:67-73. doi: 10.2142/biophysico.14.0_67. eCollection 2017.

Abstract

The myosin II SH1 helix is a joint that links the converter subdomain to the rest of the myosin motor domain and possibly plays a key role in the arrangement of the converter/lever arm. Several point mutations within the SH1 helix in human myosin IIs have been shown to cause diseases. To reveal whether these SH1 helix mutations affect not only motile activities but also thermal properties of myosin II, here we introduced the E683K or R686C point mutation into the SH1 helix in myosin II. Thermal inactivation as well as thermal aggregation rates of these mutant proteins demonstrated that these mutations decreased the thermal stability of myosin II. Temperature dependence of sliding velocities of actin filaments showed that these mutations also reduced the activation energy of a rate-limiting process involved in actin movement. Given that these mutations are likely to alter coupling between the subdomains, and thus their thermal fluctuations, we propose that the SH1 helix is a key structural element that determines the flexibility and thermal properties of the myosin motor. These characteristics of the SH1 helix may contribute to the pathogenesis of the human diseases caused by mutations within this structural element.

摘要

肌球蛋白II的SH1螺旋是一个连接转换器亚结构域与肌球蛋白运动结构域其余部分的关节,可能在转换器/杠杆臂的排列中起关键作用。已证明人类肌球蛋白II的SH1螺旋内的几个点突变会导致疾病。为了揭示这些SH1螺旋突变是否不仅影响肌球蛋白II的运动活性,还影响其热性质,我们在此将E683K或R686C点突变引入肌球蛋白II的SH1螺旋中。这些突变蛋白的热失活以及热聚集速率表明,这些突变降低了肌球蛋白II的热稳定性。肌动蛋白丝滑动速度的温度依赖性表明,这些突变还降低了肌动蛋白运动中限速过程的活化能。鉴于这些突变可能会改变亚结构域之间的偶联,从而改变它们的热涨落,我们提出SH1螺旋是决定肌球蛋白运动灵活性和热性质的关键结构元件。SH1螺旋的这些特性可能有助于由该结构元件内的突变引起的人类疾病的发病机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a098/5468464/fb3d5072e87c/14_67f1.jpg

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