首页> 外文期刊>The Journal of Physiology >Clostridium difficile toxin B inhibits carbachol-induced force and myosin light chain phosphorylation in guinea-pig smooth muscle: role of Rho proteins.
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Clostridium difficile toxin B inhibits carbachol-induced force and myosin light chain phosphorylation in guinea-pig smooth muscle: role of Rho proteins.

机译:艰难梭菌毒素B抑制豚鼠平滑肌中卡巴胆碱引起的力和肌球蛋白轻链磷酸化:Rho蛋白的作用。

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1. Clostridium difficile toxin B glucosylates the Ras-related low molecular mass GTPases of the Rho subfamily thereby inactivating them. In the present report, toxin B was applied as a tool to test whether Rho proteins participate in the carbachol-induced increase in the Ca2+ sensitivity of force and myosin light chain (MLC) phosphorylation in intact intestinal smooth muscle. 2. Small strips of the longitudinal muscle of guinea-pig small intestine were incubated in toxin B (40 ng ml-1) overnight. Carbachol-induced force and intracellular [Ca2+], and, in a separate series, force and MLC phosphorylation, were determined. 3. Carbachol induced a biphasic contraction: an initial rapid increase in force (peak 1) followed by a partial relaxation and a second delayed increase in force (peak 2). The peak of the Ca2+ signal measured with fura-2 preceded peak 1 of force and then declined to a lower suprabasal steady-state level. Peak 2 was not associated with a significant increase in [Ca2+]. Toxin B nearly completely inhibited peak 2 while peak 1 was not significantly inhibited. Toxin B had no effect on the Ca2+ transient. 4. In control strips, MLC phosphorylation at peak 2 was 27.7% which was significantly higher than the resting value (18.6%). The inhibition of the second, delayed, rise in force induced by toxin B was associated with complete inhibition of the increase in MLC phosphorylation. The resting MLC phosphorylation was not significantly different from that of the control strips. 5. The initial increase in MLC phosphorylation determined 3 s after exposure to carbachol was 54% in the control strips. Toxin B also inhibited this initial phosphorylation peak despite the fact that the Ca2+ transient and the initial increase in force were not inhibited by toxin B. This suggests that Rho proteins play an important role in setting the balance between MLC phosphorylation and dephosphorylation reactions even at high levels of intracellular Ca2+. 6. These findings are consistent with the hypothesis that the delayed rise in force elicited by carbachol is due to an increase in the Ca2+ sensitivity of MLC phosphorylation mediated by Rho proteins.
机译:1.艰难梭菌毒素B葡糖基化Rho亚家族的Ras相关的低分子量GTP酶,从而使它们失活。在本报告中,毒素B被用作测试Rho蛋白是否参与完整的肠平滑肌中卡巴胆碱诱导的Ca2 +敏感性增加和肌球蛋白轻链(MLC)磷酸化的参与。 2.将豚鼠小肠的小条纵向肌肉在毒素B(40 ng ml-1)中孵育过夜。测定了卡巴胆碱引起的力和细胞内[Ca2 +],另外还测定了力和MLC磷酸化。 3.卡巴胆碱引起双相收缩:力量最初快速增加(峰值1),然后部分松弛,第二次延迟力量增加(峰值2)。用fura-2测量的Ca2 +信号的峰值先于力的峰值1,然后下降到较低的基底上稳态水平。峰2与[Ca2 +]的显着增加无关。毒素B几乎完全抑制了峰2,而峰1没有受到明显抑制。毒素B对Ca2 +瞬变没有影响。 4.在对照条中,峰2处的MLC磷酸化为27.7%,显着高于静置值(18.6%)。毒素B诱导的第二次延迟的力上升的抑制与MLC磷酸化增加的完全抑制有关。静止的MLC磷酸化与对照条无明显差异。 5.在对照条中,暴露于卡巴胆碱3秒后确定的MLC磷酸化的初始增加为54%。尽管事实上Ca2 +瞬变和力的初始增加不受毒素B的抑制,但毒素B也抑制了该初始磷酸化峰。这表明Rho蛋白即使在高温下仍能在MLC磷酸化和去磷酸化反应之间建立平衡,发挥着重要作用。细胞内Ca2 +的水平。 6.这些发现与以下假设相吻合:卡巴胆碱引起的力的延迟升高是由于Rho蛋白介导的MLC磷酸化的Ca2 +敏感性增加所致。

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