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prestin与四个机械独立的亚基形成寡聚体。

Prestin forms oligomer with four mechanically independent subunits.

作者信息

Wang Xiang, Yang Shiming, Jia Shuping, He David Z Z

机构信息

Department of Biomedical Sciences, Creighton University School of Medicine, Omaha, NE 68178, USA.

出版信息

Brain Res. 2010 May 28;1333:28-35. doi: 10.1016/j.brainres.2010.03.070. Epub 2010 Mar 27.

Abstract

Prestin is the motor protein of cochlear outer hair cells (OHCs) with the unique capability of performing direct, rapid, and reciprocal electromechanical conversion. Prestin consists of 744 amino acids with a molecular mass of approximately 81.4 kDa. The predicted membrane topology and molecular mass of a single prestin molecule appear inadequate to account for the size of intramembrane particles (IMPs) expressed in the OHC membrane. Although recent biochemical evidence suggests that prestin forms homo-oligomers, most likely as a tetramer, the oligomeric structure of prestin in OHCs remains unclear. We obtained the charge density of prestin in the gerbil OHCs by measuring their nonlinear capacitance (NLC). The average charge density (22,608 microm(-2) measured was four times the average IMP density (5686 microm(-2) reported in the freeze-fracture study. This suggests that each IMP contains four prestin molecules, based on the general notion that each prestin transfers a single elementary charge. We subsequently compared the voltage dependency and the values of slope factor of NLC and somatic motility simultaneously measured from the same OHCs to determine whether NLC and motility are fully coupled and how prestin subunits function within the tetramer. We showed that the voltage dependency and slope factors of NLC and motility were not statistically different, suggesting that NLC and motility are fully coupled. The fact that the slope factor is the same between NLC and motility suggests that each prestin monomer in the tetramer is in parallel, each interacting independently with cytoplasmic or other partners to facilitate the mechanical response.

摘要

Prestin是耳蜗外毛细胞(OHCs)的运动蛋白,具有直接、快速和可逆的机电转换独特能力。Prestin由744个氨基酸组成,分子量约为81.4 kDa。单个Prestin分子的预测膜拓扑结构和分子量似乎不足以解释OHC膜中表达的膜内颗粒(IMPs)的大小。尽管最近的生化证据表明Prestin形成同型寡聚体,很可能是四聚体,但OHCs中Prestin的寡聚结构仍不清楚。我们通过测量沙鼠OHCs中的非线性电容(NLC)获得了Prestin的电荷密度。测得的平均电荷密度(22,608 微米-2)是冷冻断裂研究中报道的平均IMP密度(5686 微米-2)的四倍。这表明基于每个Prestin转移单个基本电荷的一般概念,每个IMP包含四个Prestin分子。我们随后比较了从同一OHCs同时测量的NLC和体细胞运动性的电压依赖性和斜率因子值,以确定NLC和运动性是否完全耦合以及Prestin亚基在四聚体内如何发挥作用。我们表明NLC和运动性的电压依赖性和斜率因子在统计学上没有差异,表明NLC和运动性完全耦合。NLC和运动性之间斜率因子相同的事实表明,四聚体中的每个Prestin单体是平行的,每个单体独立地与细胞质或其他伙伴相互作用以促进机械反应。

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