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首页> 外文期刊>American Journal of Physiology >Expression and function of COOH-terminal myosin heavy chain isoforms in mouse smooth muscle.
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Expression and function of COOH-terminal myosin heavy chain isoforms in mouse smooth muscle.

机译:COOH末端肌球蛋白重链亚型在小鼠平滑肌中的表达和功能。

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摘要

Isoforms of the smooth muscle myosin motor, SM1 and SM2, differ in length at the carboxy terminal tail region. Their proportion changes with development, hormonal status and disease, but their function is unknown. We developed mice carrying the myosin heavy chain (MyHC) transgenes SM1, cMyc-tagged SM1, SM2, and V5-tagged SM2, and all transgenes corresponded to the SMa NH(2)-terminal isoform. Transgene expression was targeted to smooth muscle by the smooth muscle alpha-actin promoter. Immunoblot analysis showed substantial expression of the cMyc-tagged SM1 and V5-tagged SM2 MyHC protein in aorta and bladder and transgene mRNA was expressed in mice carrying unlabeled SM1 or SM2 transgenes. Despite significant protein expression of tagged MyHCs we found only small changes in the SM1:SM2 protein ratio. Significant changes in functional phenotype were observed in mice carrying unlabeled SM1 or SM2 transgenes. Force in aorta and bladder was increased (72 +/- 14%, 92 +/- 11%) in SM1 and decreased to 57 +/- 1%and 80 +/- 3% in SM2 transgenic mice. SM1 transgenic bladders had faster (1.8 +/- 0.3 s) and SM2 slower (7.1 +/- 0.5 s) rates of force redevelopment following a rapid step shortening. We hypothesize that small changes in the SM1:SM2 ratio could be amplified if they are associated with changes in thick filament assembly and underlie the altered contractility. These data provide evidence indicating an in vivo function for the COOH-terminal isoforms of smooth muscle myosin and suggest that the SM1:SM2 ratio is tightly regulated in smooth muscle tissues.
机译:平滑肌肌球蛋白运动的同工型SM1和SM2在羧基末端尾部区域的长度不同。它们的比例随发育,荷尔蒙状况和疾病而变化,但其功能尚不清楚。我们开发了携带肌球蛋白重链(MyHC)转基因SM1,cMyc标记的SM1,SM2和V5标记的SM2的小鼠,并且所有转基因都对应于SMa NH(2)末端亚型。转基因表达通过平滑肌α-肌动蛋白启动子靶向平滑肌。免疫印迹分析显示,cMyc标签的SM1和V5标签的SM2 MyHC蛋白在主动脉和膀胱中大量表达,转基因mRNA在携带未标记的SM1或SM2转基因的小鼠中表达。尽管标记的MyHCs蛋白表达显着,但我们发现SM1:SM2蛋白比率只有很小的变化。在携带未标记的SM1或SM2转基因的小鼠中观察到功能表型的显着变化。 SM1转基因小鼠的主动脉和膀胱受力增加(72 +/- 14%,92 +/- 11%),而SM2转基因小鼠则降至57 +/- 1%和80 +/- 3%。在快速缩短步骤之后,SM1转基因膀胱的力量重建速度更快(1.8 +/- 0.3 s),SM2速度更慢(7.1 +/- 0.5 s)。我们假设如果SM1:SM2比率的细微变化与粗丝组件的变化相关联并且是收缩力改变的基础,则可以放大它们。这些数据提供了表明平滑肌肌球蛋白的COOH末端亚型的体内功能的证据,并表明SM1:SM2的比率在平滑肌组织中受到严格调节。

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