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蛋白磷酸酶2A在受体介导的心肌肌膜钠/氢交换体NHE1调节中的新作用。

A novel role for protein phosphatase 2A in receptor-mediated regulation of the cardiac sarcolemmal Na+/H+ exchanger NHE1.

作者信息

Snabaitis Andrew K, D'Mello Richard, Dashnyam Semjidmaa, Avkiran Metin

机构信息

Cardiovascular Division, King's College London, London SE1 7EH, UK.

出版信息

J Biol Chem. 2006 Jul 21;281(29):20252-62. doi: 10.1074/jbc.M600268200. Epub 2006 May 16.

Abstract

G(q) protein-coupled receptor stimulation increases sarcolemmal Na(+)/H(+) exchanger (NHE1) activity in cardiac myocytes by an ERK/RSK-dependent mechanism, most likely via RSK-mediated phosphorylation of the NHE1 regulatory domain. Adenosine A(1) receptor stimulation inhibits this response through a G(i) protein-mediated pathway, but the distal inhibitory signaling mechanisms are unknown. In cultured adult rat ventricular myocytes (ARVM), the A(1) receptor agonist cyclopentyladenosine (CPA) inhibited the increase in NHE1 phosphorylation induced by the alpha(1)-adrenoreceptor agonist phenylephrine, without affecting activation of the ERK/RSK pathway. CPA also induced significant accumulation of the catalytic subunit of type 2A protein phosphatase (PP2A(c)) in the particulate fraction, which contained the cellular NHE1 complement; this effect was abolished by pretreatment with pertussis toxin to inactivate G(i) proteins. Confocal immunofluorescence microscopic imaging of CPA-treated ARVM revealed significant co-localization of PP2A(c) and NHE1, in intercalated disc regions. In an in vitro assay, purified PP2A(c) dephosphorylated a GST-NHE1 fusion protein containing aa 625-747 of the NHE1 regulatory domain, which had been pre-phosphorylated by recombinant RSK; such dephosphorylation was inhibited by the PP2A-selective phosphatase inhibitor endothall. In intact ARVM, the ability of CPA to attenuate the phenylephrine-induced increase in NHE1 phosphorylation and activity was lost in the presence of endothall. These studies reveal a novel role for the PP2A holoenzyme in adenosine A(1) receptor-mediated regulation of NHE1 activity in ARVM, the mechanism of which appears to involve G(i) protein-mediated translocation of PP2A(c) and NHE1 dephosphorylation.

摘要

G(q)蛋白偶联受体刺激通过ERK/RSK依赖机制增加心肌细胞肌膜Na(+)/H(+)交换体(NHE1)的活性,最可能是通过RSK介导的NHE1调节结构域磷酸化。腺苷A(1)受体刺激通过G(i)蛋白介导的途径抑制这种反应,但远端抑制信号机制尚不清楚。在培养的成年大鼠心室肌细胞(ARVM)中,A(1)受体激动剂环戊腺苷(CPA)抑制α(1)-肾上腺素能受体激动剂去氧肾上腺素诱导的NHE1磷酸化增加,而不影响ERK/RSK途径的激活。CPA还诱导2A类蛋白磷酸酶催化亚基(PP2A(c))在微粒部分显著积累,微粒部分包含细胞NHE1;用百日咳毒素预处理使G(i)蛋白失活可消除这种作用。对CPA处理的ARVM进行共聚焦免疫荧光显微镜成像显示,在闰盘区域PP2A(c)和NHE1有显著共定位。在体外试验中,纯化的PP2A(c)使含有NHE1调节结构域第625 - 747位氨基酸的GST-NHE1融合蛋白去磷酸化,该融合蛋白已被重组RSK预磷酸化;PP2A选择性磷酸酶抑制剂烯丙噻醇可抑制这种去磷酸化。在完整的ARVM中,存在烯丙噻醇时,CPA减弱去氧肾上腺素诱导的NHE1磷酸化和活性增加的能力丧失。这些研究揭示了PP2A全酶在腺苷A(1)受体介导的ARVM中NHE1活性调节中的新作用,其机制似乎涉及G(i)蛋白介导的PP2A(c)易位和NHE1去磷酸化。

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