Suppr超能文献

肌球蛋白运动结构域的颈部区域充当杠杆臂以产生运动。

The neck region of the myosin motor domain acts as a lever arm to generate movement.

作者信息

Uyeda T Q, Abramson P D, Spudich J A

机构信息

National Institute for Advanced Interdisciplinary Research and Mechanical Engineering Laboratory, Agency of Industrial Science and Technology, Ibaraki, Japan.

出版信息

Proc Natl Acad Sci U S A. 1996 Apr 30;93(9):4459-64. doi: 10.1073/pnas.93.9.4459.

Abstract

The myosin head consists of a globular catalytic domain that binds actin and hydrolyzes ATP and a neck domain that consists of essential and regulatory light chains bound to a long alpha-helical portion of the heavy chain. The swinging neck-level model assumes that a swinging motion of the neck relative to the catalytic domain is the origin of movement. This model predicts that the step size, and consequently the sliding velocity, are linearly related to the length of the neck. We have tested this point by characterizing a series of mutant Dictyostelium myosins that have different neck lengths. The 2xELCBS mutant has an extra binding site for essential light chain. The delta RLCBS mutant myosin has an internal deletion that removes the regulatory light chain binding site. The delta BLCBS mutant lacks both light chain binding sites. Wild-type myosin and these mutant myosins were subjected to the sliding filament in vitro motility assay. As expected, mutants with shorter necks move slower than wild-type myosin in vitro. Most significantly, a mutant with a longer neck moves faster than the wild type, and the sliding velocities of these myosins are linearly related to the neck length, as predicted by the swinging neck-lever model. A simple extrapolation to zero speed predicts that the fulcrum point is in the vicinity of the SH1-SH2 region in the catalytic domain.

摘要

肌球蛋白头部由一个结合肌动蛋白并水解ATP的球状催化结构域和一个颈部结构域组成,颈部结构域由与重链的一个长α螺旋部分结合的必需轻链和调节轻链组成。摆动颈部水平模型假定颈部相对于催化结构域的摆动运动是运动的起源。该模型预测步长以及因此的滑动速度与颈部长度呈线性相关。我们通过对一系列具有不同颈部长度的突变盘基网柄菌肌球蛋白进行表征来检验这一点。2xELCBS突变体有一个额外的必需轻链结合位点。δRLCBS突变体肌球蛋白有一个内部缺失,去除了调节轻链结合位点。δBLCBS突变体缺乏两个轻链结合位点。野生型肌球蛋白和这些突变体肌球蛋白进行了体外滑动丝运动测定。正如预期的那样,颈部较短的突变体在体外移动得比野生型肌球蛋白慢。最显著的是,颈部较长的突变体移动得比野生型快,并且这些肌球蛋白的滑动速度与颈部长度呈线性相关,正如摆动颈部杠杆模型所预测的那样。对零速度的简单外推预测支点位于催化结构域的SH1 - SH2区域附近。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cec/39560/85d3856ea321/pnas01516-0755-a.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验