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Evidence for Absence of Latchbridge Formation in Phasic Saphenous Artery

机译:阶段性大隐性动脉中无闩桥形成的证据

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摘要

Tonic arterial smooth muscle can produce strong contractions indefinitely by formation of slowly cycling crossbridges (latchbridges) that maintain force at a high energy economy. To fully understand the uniqueness of mechanisms regulating tonic arterial contraction, comparisons have been made to phasic visceral smooth muscles that do not sustain high forces. This study explored mechanisms of force maintenance in a phasic artery by comparing KCl-induced contractions in the tonic, femoral artery (FA) and its primary branch, the phasic saphenous artery (SA). KCl rapidly (5 N/m2) and [ca2+]i (250 nM) in FA and SA. By 10 min, [ca2+]i declined to 175 nM in both tissues but stress was sustained in FA (1.3 x 105N/m2) and reduced by 40% in SA (0.8 x l05 N/m2). Reduced tonic stress correlated with reduced myosin light chain (MLC) phosphorylation in SA (28% vs. 42% in FA). SA expressed more MLC phosphatase than FA, and permeabilized (β-escin) SA relaxed more rapidly than FA in the presence of MLC kinase blockade, suggesting that MLC phosphatase activity in SA was greater than that in FA. The reduction in MLC phosphorylation in SA was insufficient to account for reduced tonic force (latchbridge model), and SA expressed more u22fastu22 myosin isoforms than did FA. Cytochalasin-D reduced force-maintenance more in FA than SA. These data support the hypothesis that strong force-maintenance is absent in SA because expressed motor proteins do not support latchbridge formation, and because actin polymerization is not stimulated.
机译:补气动脉平滑肌可通过形成缓慢循环的跨桥(闩锁桥)来无限期产生强力收缩,这些桥将力维持在高能量经济性下。为了充分理解调节补气动脉收缩的机制的独特性,已经对不承受高力的相控内脏平滑肌进行了比较。这项研究通过比较KCl引起的在强直,股动脉(FA)及其主要分支即隐性大隐动脉(SA)中的收缩,探索了相动脉中的力维持机制。 FA和SA中的KCl迅速(5 N / m2)和[ca2 +] i(250 nM)。到10分钟时,两个组织中[ca2 +] i均降至175 nM,但在FA(1.3 x 105N / m2)中持续承受压力,在SA(0.8 x 105 N / m2)中持续降低40%。降低的张力与SA中的肌球蛋白轻链(MLC)磷酸化降低有关(FA中分别为28%和42%)。 SA在MLC激酶阻滞下比SA表达更多的MLC磷酸酶,并且透化(β-七叶皂苷)SA比FA松弛更快,这表明SA中MLC磷酸酶的活性高于FA。 SA中MLC磷酸化的减少不足以说明张力降低(闩桥模型),并且SA与FA相比表达更多的肌球蛋白同工型。 Cychachalasin-D在FA中比SA减少了更多的力维持。这些数据支持以下假设:SA中不存在强力维护功能,因为表达的运动蛋白不支持闩锁桥的形成,并且因为肌动蛋白的聚合不受刺激。

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    Han Shaojie;

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  • 年度 2005
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