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Rho-kinase 抑制减弱了β-七叶皂甙钠诱导的但不减弱 Triton X-100 通透化的兔股动脉的钙诱导收缩。

Rho-kinase inhibition attenuates calcium-induced contraction in β-escin but not Triton X-100 permeabilized rabbit femoral artery.

机构信息

Department of Biochemistry and Molecular Biology, Virginia Commonwealth University School of Medicine, 1101 East Marshall Street, PO Box 980614, Richmond, VA 23298-0614, USA.

出版信息

J Muscle Res Cell Motil. 2011 Sep;32(2):77-88. doi: 10.1007/s10974-011-9253-x. Epub 2011 Jun 25.

Abstract

K+-depolarization (KCl) of smooth muscle has long been known to cause Ca2+-dependent contraction, but only recently has this G protein-coupled receptor (GPCR)-independent stimulus been associated with rhoA kinase (ROCK)-dependent myosin light chain (MLC) phosphatase inhibition and Ca2+ sensitization. This study examined effects of ROCK inhibition on the concentration-response curves (CRCs) generated in femoral artery by incrementally adding increasing concentrations of KCl to intact tissues, and Ca2+ to tissues permeabilized with Triton X-100, β-escin and α-toxin. For a comparison, tissue responses were assessed also in the presence of protein kinase C (PKC) and MLC kinase inhibition. The ROCK inhibitor H-1152 induced a strong concentration-dependent inhibition of a KCl CRC. A relatively low GF-109203X concentration (1 μM) sufficient to inhibit conventional PKC isotypes also inhibited the KCl CRC but did not affect the maximum tension. ROCK inhibitors had no effect on the Ca2+ CRC induced in Triton X-100 or α-toxin permeabilized tissues, but depressed the maximum contraction induced in β-escin permeabilized tissue. GF-109203X at 1 μM depressed the maximum Ca2+-dependent contraction induced in α-toxin permeabilized tissue and had no effect on the Ca2+ CRC induced in Triton X-100 permeabilized tissue. The MLC kinase inhibitor wortmannin (1 μM) strongly depression the Ca2+ CRCs in tissues permeabilized with Triton X-100, α-toxin and β-escin. H-1152 inhibited contractions induced by a single exposure to a submaximum [Ca2+] (pCa 6) in both rabbit and mouse femoral arteries. These data indicate that β-escin permeabilized muscle preserves GPCR-independent, Ca2+- and ROCK-dependent, Ca2+ sensitization.

摘要

K+去极化(KCl)引起平滑肌收缩早已为人所知,但直到最近,这种 G 蛋白偶联受体(GPCR)非依赖性刺激才与 rhoA 激酶(ROCK)依赖性肌球蛋白轻链(MLC)磷酸酶抑制和 Ca2+敏化有关。本研究检查了 ROCK 抑制对完整组织中逐渐增加 KCl 浓度产生的股动脉浓度反应曲线(CRC)以及用 Triton X-100、β-商陆皂苷元和α-毒素通透组织中 Ca2+的影响。为了进行比较,还评估了组织在蛋白激酶 C(PKC)和 MLC 激酶抑制存在下的反应。ROCK 抑制剂 H-1152 强烈地浓度依赖性抑制 KCl CRC。相对低浓度的 GF-109203X(1 μM)足以抑制传统的 PKC 同工型,也抑制了 KCl CRC,但不影响最大张力。ROCK 抑制剂对 Triton X-100 或α-毒素通透组织中诱导的 Ca2+ CRC 没有影响,但抑制了β-商陆皂苷元通透组织中诱导的最大收缩。GF-109203X(1 μM)在 1 μM 时抑制了α-毒素通透组织中诱导的最大 Ca2+依赖性收缩,对 Triton X-100 通透组织中诱导的 Ca2+ CRC 没有影响。MLC 激酶抑制剂wortmannin(1 μM)强烈抑制了 Triton X-100、α-毒素和β-商陆皂苷元通透组织中的 Ca2+ CRC。H-1152 抑制了兔和鼠股动脉单次暴露于亚最大 [Ca2+](pCa 6)时引起的收缩。这些数据表明,β-商陆皂苷元通透的肌肉保留了 GPCR 非依赖性、Ca2+依赖性和 ROCK 依赖性、Ca2+敏化。

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