首页> 外文期刊>Journal of Muscle Research and Cell Motility >Myosin heavy chain isoform expression regulates shortening velocity in smooth muscle: studies using an SMB KO mouse line.
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Myosin heavy chain isoform expression regulates shortening velocity in smooth muscle: studies using an SMB KO mouse line.

机译:肌球蛋白重链同工型表达调节平滑肌的缩短速度:使用SMB KO小鼠品系的研究。

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摘要

The kinetics of smooth muscle are thought to be partially determined by the level of the expression of the 7 amino acid insert, SMB, in the myosin heavy chain, as SMB is generally expressed at higher levels in faster smooth muscle. In this study, we determined the role of this insert on shortening velocity and force regeneration following rapid reduction in muscle length (k(step)) in bladder tissue from a transgenic mouse line expressing the insert at three different levels: wild type (WT, +/+, SMB/SMB), an SMA homozygous type (SMB KO, -/-), and a heterozygous type (+/-, SMB/SMA). Smooth muscle from +/+ bladder shorten faster than both the +/- and -/- bladder smooth muscle when activated with Ca2+, consistent with SMB determining the shortening velocity of smooth muscle. The addition of Pi to the fully activated skinned bladder strips did not affect the rate of shortening for either the +/+ or -/- bladder types but did significantly decrease the rate of shortening for the +/- type. In contrast, the addition of ADP to fully Ca2+ activated bladder strips increased the rate of shortening for all three bladder types. However after thiophosphorylation, ADP slowed the shortening velocity. These data are consistent with shortening velocity being determined by the level of activation (or crossbridge attachment) in smooth muscle. The rates of force regeneration according to the k(step) protocol showed no differences between bladder types and also proved insensitive to either Pi or ADP. These data suggest that the rates of force regeneration were determined not only by the kinetics of the crossbridge cycle, but also by factors outside the contractile apparatus.
机译:平滑肌的动力学被认为部分取决于肌球蛋白重链中7个氨基酸插入片段SMB的表达水平,因为SMB通常在较快的平滑肌中以较高的水平表达。在这项研究中,我们确定了该插入物在快速降低了膀胱组织中肌肉长度(k(步))的肌肉长度(k(步))后的速度和力再生中的作用,该转基因小鼠品系以三种不同的水平表达该插入物:野生型(WT, + / +,SMB / SMB),SMA纯合型(SMB KO,-/-)和杂合型(+/-,SMB / SMA)。当由Ca2 +激活时,来自+ / +膀胱的平滑肌比+/-和-/-膀胱平滑肌都快,这与SMB决定了平滑肌的缩短速度一致。在完全激活的带皮囊的膀胱条上添加Pi不会影响+ / +或-/-膀胱类型的缩短率,但会显着降低+/-类型的缩短率。相反,在完全由Ca2 +活化的膀胱条中添加ADP会增加所有三种膀胱类型的缩短率。然而,在硫代磷酸化之后,ADP减慢了缩短速度。这些数据与由平滑肌的激活水平(或跨桥附着)确定的缩短速度相一致。根据k(step)方案的力再生速率显示出膀胱类型之间没有差异,并且还被证明对Pi或ADP不敏感。这些数据表明,力的再生速率不仅取决于横桥循环的动力学,而且还取决于收缩装置之外的因素。

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