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G蛋白偶联受体激酶6A的质膜和核定位

Plasma membrane and nuclear localization of G protein coupled receptor kinase 6A.

作者信息

Jiang Xiaoshan, Benovic Jeffrey L, Wedegaertner Philip B

机构信息

Department of Biochemistry and Molecular Biology, Thomas Jefferson University, Philadelphia, PA 19107, USA.

出版信息

Mol Biol Cell. 2007 Aug;18(8):2960-9. doi: 10.1091/mbc.e07-01-0013. Epub 2007 May 30.

Abstract

G protein-coupled receptor (GPCR) kinases (GRKs) specifically phosphorylate agonist-occupied GPCRs at the inner surface of the plasma membrane (PM), leading to receptor desensitization. Here we show that the C-terminal 30 amino acids of GRK6A contain multiple elements that either promote or inhibit PM localization. Disruption of palmitoylation by individual mutation of cysteine 561, 562, or 565 or treatment of cells with 2-bromopalmitate shifts GRK6A from the PM to both the cytoplasm and nucleus. Likewise, disruption of the hydrophobic nature of a predicted amphipathic helix by mutation of two leucines to alanines at positions 551 and 552 causes a loss of PM localization. Moreover, acidic amino acids in the C-terminus appear to negatively regulate PM localization; mutational replacement of several acidic residues with neutral or basic residues rescues PM localization of a palmitoylation-defective GRK6A. Last, we characterize the novel nuclear localization, showing that nuclear export of nonpalmitoylated GRK6A is sensitive to leptomycin B and that GRK6A contains a potential nuclear localization signal. Our results suggest that the C-terminus of GRK6A contains a novel electrostatic palmitoyl switch in which acidic residues weaken the membrane-binding strength of the amphipathic helix, thus allowing changes in palmitoylation to regulate PM versus cytoplasmic/nuclear localization.

摘要

G蛋白偶联受体(GPCR)激酶(GRK)特异性地使质膜(PM)内表面上被激动剂占据的GPCR磷酸化,导致受体脱敏。在这里,我们表明GRK6A的C末端30个氨基酸包含多个促进或抑制PM定位的元件。通过半胱氨酸561、562或565的个别突变破坏棕榈酰化,或用2-溴棕榈酸酯处理细胞,会使GRK6A从PM转移到细胞质和细胞核。同样,通过将551和552位的两个亮氨酸突变为丙氨酸来破坏预测的两亲螺旋的疏水性,会导致PM定位丧失。此外,C末端的酸性氨基酸似乎对PM定位起负调节作用;用中性或碱性残基对几个酸性残基进行突变替换可挽救棕榈酰化缺陷型GRK6A的PM定位。最后,我们对新的核定位进行了表征,表明非棕榈酰化GRK6A的核输出对 leptomycin B敏感,并且GRK6A含有一个潜在的核定位信号。我们的结果表明,GRK6A的C末端包含一个新的静电棕榈酰开关,其中酸性残基削弱了两亲螺旋的膜结合强度,从而允许棕榈酰化的变化来调节PM与细胞质/细胞核的定位。

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