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首页> 外文期刊>American Journal of Physiology >Role of plasma membrane Ca2+-ATPase in contraction-relaxation processes of the bladder: evidence from PMCA gene-ablated mice.
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Role of plasma membrane Ca2+-ATPase in contraction-relaxation processes of the bladder: evidence from PMCA gene-ablated mice.

机译:质膜Ca2 + -ATPase在膀胱收缩松弛过程中的作用:来自PMCA基因消融小鼠的证据。

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摘要

We investigated the roles and relationships of plasma membrane Ca(2+)-ATPase (PMCA), sarco(endo)plasmic reticulum Ca(2+)-ATPase (SERCA)2, and Na(+)/Ca(2+) exchanger (NCX) in bladder smooth muscle contractility in Pmca-ablated mice: Pmca4-null mutant (Pmca4(-/-)) and heterozygous Pmca1 and homozygous Pmca4 double gene-targeted (Pmca1(+/-)Pmca4(-/-)) mice. Gene manipulation did not alter the amounts of PMCA1, SERCA2, and NCX. To study the role of each Ca(2+) transport system, contraction of circular ring preparations was elicited with KCl (80 mM) plus atropine, and then the muscle was relaxed with Ca(2+)-free physiological salt solution containing EGTA. We measured the contributions of Ca(2+) clearance components by inhibiting SERCA2 (with 10 microM cyclopiazonic acid) and/or NCX (by replacing NaCl with N-methyl-D-glucamine/HCl plus 10 microM KB-R7943). Contraction half-time (time to 50% of maximum tension) was prolonged in the gene-targeted muscles but marginally shortened when SERCA2 or NCX was inhibited. The inhibition of NCX significantly inhibited this prolongation, suggesting that NCX activity might be augmented to compensate for PMCA4 function in the gene-targeted muscles under nonstimulated conditions. Inhibition of SERCA2 and NCX as well as gene targeting all prolonged the relaxation half-time. The contribution of PMCA to relaxation was calculated to be approximately 25-30%, with that of SERCA2 being 20% and that of NCX being 70%. PMCA and SERCA2 appeared to function additively, but the function of NCX might overlap with those of other components. In summary, gene manipulation of PMCA indicates that PMCA, in addition to SERCA2 and NCX, plays a significant role in both excitation-contraction coupling and the Ca(2+) extrusion-relaxation relationship, i.e., Ca(2+) homeostasis, of bladder smooth muscle.
机译:我们调查的质膜Ca(2 +)-ATPase(PMCA),肌浆网(Cao(2 +)-ATPase(SERCA)2和Na(+)/ Ca(2+)交换子的作用和关系(NCX)在Pmca消融小鼠的膀胱平滑肌收缩中:Pmca4-null突变体(Pmca4(-/-))和杂合Pmca1和纯合Pmca4双基因靶向(Pmca1(+/-)Pmca4(-/-))老鼠。基因操作不会改变PMCA1,SERCA2和NCX的量。若要研究每个Ca(2+)转运系统的作用,用KCl(80 mM)加阿托品引起圆环制剂的收缩,然后用不含EGTA的不含Ca(2+)的生理盐溶液使肌肉松弛。我们通过抑制SERCA2(用10 microM环吡唑酸)和/或NCX(用N-甲基-D-葡糖胺/ HCl代替NaCl加10 microM KB-R7943)来测量Ca(2+)清除组分的贡献。基因靶向肌肉的收缩半衰期(达到最大张力的50%的时间)延长,但是当SERCA2或NCX被抑制时,收缩时间略有缩短。对NCX的抑制作用显着抑制了这种延长,这表明在非刺激条件下,NCX活性可能会增强,以补偿基因靶向肌肉中的PMCA4功能。抑制SERCA2和NCX以及靶向基因均延长了弛豫时间。经计算,PMCA对弛豫的贡献约为25-30%,其中SERCA2为20%,NCX为70%。 PMCA和SERCA2似乎具有相加功能,但NCX的功能可能与其他组件的功能重叠。总之,PMCA的基因操作表明,除SERCA2和NCX外,PMCA在激发-收缩偶联和Ca(2+)挤出-松弛关系(即Ca(2+)稳态)中起着重要作用。膀胱平滑肌。

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