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首页> 外文期刊>American Journal of Physiology >Caveolin-1 and caveolin-3 regulate Ca2+ homeostasis of single smooth muscle cells from rat cerebral resistance arteries.
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Caveolin-1 and caveolin-3 regulate Ca2+ homeostasis of single smooth muscle cells from rat cerebral resistance arteries.

机译:Caveolin-1和Caveolin-3调节大鼠脑阻力动脉中单个平滑肌细胞的Ca2 +稳态。

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摘要

The role of caveolins, signature proteins of caveolae, in arterial Ca(2+) regulation is unknown. We investigated modulation of Ca(2+) homeostasis by caveolin-1 and caveolin-3 using smooth muscle cells from rat cerebral resistance arteries. Membrane current and Ca(2+) transients were simultaneously measured with voltage-clamped single cells. Membrane depolarization triggered Ca(2+) current and increased intracellular Ca(2+) concentration ([Ca(2+)](i)). After repolarization, elevated [Ca(2+)](i) returned to the resting level. Ca(2+) removal rate was determined from the declining phase of the Ca(2+) transient. Application of caveolin-1 antibody or caveolin-1 scaffolding domain peptide, corresponding to amino acid residues 82-101 of caveolin-1, significantly slowed Ca(2+) removal rate at a measured [Ca(2+)](i) of 250 nM, with little effect at a measured [Ca(2+)](i) of 600 nM. Application of caveolin-3 antibody or caveolin-3 scaffolding domain peptide, corresponding to amino acid residues 55-74 of caveolin-3, also significantly slowed Ca(2+) removal rate at a measured [Ca(2+)](i) of 250 nM, with little effect at a measured [Ca(2+)](i) of 600 nM. Likewise, application of calmodulin inhibitory peptide, autocamtide-2-related inhibitory peptide, and cyclosporine A, inhibitors for calmodulin, Ca(2+)/calmodulin-dependent protein kinase II, and calcineurin, also significantly inhibited Ca(2+) removal rate at a measured [Ca(2+)](i) of 250 nM but not at 600 nM. Application of cyclopiazonic acid, a sarcoplasmic reticulum Ca(2+) ATPase inhibitor, also significantly inhibited Ca(2+) removal rate at a measured [Ca(2+)](i) of 250 nM but not at 600 nM. Our results suggest that caveolin-1 and caveolin-3 are important in Ca(2+) removal of resistance artery smooth muscle cells.
机译:小窝蛋白,小窝的标志性蛋白,在动脉Ca(2+)调节中的作用是未知的。我们调查了cavolin-1和caveolin-3使用大鼠脑阻力动脉平滑肌细胞对Ca(2+)稳态的调节。膜电流和Ca(2+)瞬变是同时用电压钳制的单电池测量的。膜去极化触发Ca(2+)电流并增加细胞内Ca(2+)浓度([Ca(2 +)](i))。重新极化后,升高的[Ca(2 +)](i)返回到静止水平。从下降阶段的Ca(2+)瞬态确定Ca(2+)去除率。对应于caveolin-1的氨基酸残基82-101的caveolin-1抗体或caveolin-1支架结构域肽的应用在测定的[Ca(2 +)](i)时显着减慢了Ca(2+)的去除速率。 250 nM,在测得的[Ca(2 +)](i)为600 nM时几乎没有影响。对应于caveolin-3氨基酸残基55-74的caveolin-3抗体或caveolin-3支架结构域肽的应用在测定的[Ca(2 +)](i)上也显着减慢了Ca(2+)的去除速率。为250 nM,在测得的[Ca(2 +)](i)为600 nM时几乎没有影响。同样,钙调蛋白抑制肽,autocamtide-2相关的抑制肽和环孢菌素A,钙调蛋白,Ca(2 +)/钙调蛋白依赖性蛋白激酶II和钙调神经磷酸酶的抑制剂的应用也显着抑制了Ca(2+)的去除率。的[Ca(2 +)](i)为250 nM,但不是600 nM。环质唑啉酸,一种肌浆网Ca(2+)ATPase抑制剂的应用还显着抑制了Ca(2+)的去除率,测定的[Ca(2 +)](i)为250 nM,但未达到600 nM。我们的结果表明,caveolin-1和caveolin-3在Ca(2+)去除阻力动脉平滑肌细胞中很重要。

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