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G(q)- 偶联受体对爪蟾卵母细胞中 L 型钙通道不同亚型的调制:Gβγ 和蛋白激酶 C 的拮抗作用。

Modulation of distinct isoforms of L-type calcium channels by G(q)-coupled receptors in Xenopus oocytes: antagonistic effects of Gβγ and protein kinase C.

机构信息

Department of Physiology and Pharmacology, Sackler School of Medicine, Tel Aviv University, Tel Aviv, Israel.

出版信息

Channels (Austin). 2012 Nov-Dec;6(6):426-37. doi: 10.4161/chan.22016. Epub 2012 Sep 18.

Abstract

L-type voltage dependent Ca(2+) channels (L-VDCCs; Ca(v)1.2) are crucial in cardiovascular physiology. In heart and smooth muscle, hormones and transmitters operating via G(q) enhance L-VDCC currents via essential protein kinase C (PKC) involvement. Heterologous reconstitution studies in Xenopus oocytes suggested that PKC and G(q)-coupled receptors increased L-VDCC currents only in cardiac long N-terminus (NT) isoforms of α(1C), whereas known smooth muscle short-NT isoforms were inhibited by PKC and G(q) activators. We report a novel regulation of the long-NT α(1C) isoform by Gβγ. Gβγ inhibited whereas a Gβγ scavenger protein augmented the G(q)--but not phorbol ester-mediated enhancement of channel activity, suggesting that Gβγ acts upstream from PKC. In vitro binding experiments reveal binding of both Gβγ and PKC to α(1C)-NT. However, PKC modulation was not altered by mutations of multiple potential phosphorylation sites in the NT, and was attenuated by a mutation of C-terminally located serine S1928. The insertion of exon 9a in intracellular loop 1 rendered the short-NT α(1C) sensitive to PKC stimulation and to Gβγ scavenging. Our results suggest a complex antagonistic interplay between G(q)-activated PKC and Gβγ in regulation of L-VDCC, in which multiple cytosolic segments of α(1C) are involved.

摘要

L 型电压依赖性钙通道(L-VDCCs;Ca(v)1.2)在心血管生理学中至关重要。在心脏和平滑肌中,通过 G(q) 作用的激素和递质通过必需的蛋白激酶 C(PKC)参与增强 L-VDCC 电流。在非洲爪蟾卵母细胞中的异源重组研究表明,PKC 和 G(q) 偶联受体仅在心脏长 N 末端(NT)α(1C)同工型中增加 L-VDCC 电流,而已知的平滑肌短-NT 同工型则被 PKC 和 G(q) 激活剂抑制。我们报告了 Gβγ 对长-NT α(1C)同工型的新调节。Gβγ 抑制,而 Gβγ 清除蛋白增强了 G(q)——但不能增强蛋白激酶 C 介导的通道活性,这表明 Gβγ 作用于 PKC 的上游。体外结合实验显示 Gβγ 和 PKC 与 α(1C)-NT 结合。然而,PKC 调节不受 NT 中多个潜在磷酸化位点突变的影响,并且受到 C 末端丝氨酸 S1928 突变的影响而减弱。在细胞内环 1 中插入外显子 9a 使短-NT α(1C)对 PKC 刺激和 Gβγ 清除敏感。我们的结果表明,在 L-VDCC 的调节中,G(q) 激活的 PKC 和 Gβγ 之间存在复杂的拮抗相互作用,其中涉及 α(1C)的多个细胞溶质片段。

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