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蛋白激酶C对GRK2的磷酸化作用消除了钙调蛋白对它的抑制。

Phosphorylation of GRK2 by protein kinase C abolishes its inhibition by calmodulin.

作者信息

Krasel C, Dammeier S, Winstel R, Brockmann J, Mischak H, Lohse M J

机构信息

Institut für Pharmakologie und Toxikologie, Versbacher Str. 9, D-97078 Würzburg, Germany.

出版信息

J Biol Chem. 2001 Jan 19;276(3):1911-5. doi: 10.1074/jbc.M008773200. Epub 2000 Oct 19.

Abstract

G-protein-coupled receptor kinases (GRKs) are important regulators of G-protein-coupled receptor function. Two members of this family L, GRK2 and GRK5 L, have been shown to be substrates for protein kinase C (PKC). Whereas PKC-mediated phosphorylation results in inhibition of GRK5, it increases the activity of GRK2 toward its substrates probably through increased affinity for receptor-containing membranes. We show here that this increase in activity may be caused by relieving a tonic inhibition of GRK2 by calmodulin. In vitro, GRK2 was preferentially phosphorylated by PKC isoforms alpha, gamma, and delta. Two-dimensional peptide mapping of PKCalpha-phosphorylated GRK2 showed a single site of phosphorylation, which was identified as serine 29 by HPLC-MS. A S29A mutant of GRK2 was not phosphorylated by PKC in vitro and showed no phorbol ester-stimulated phosphorylation when transfected into human embryonic kidney (HEK)293 cells. Serine 29 is located in the calmodulin-binding region of GRK2, and binding of calmodulin to GRK2 results in inhibition of kinase activity. This inhibition was almost completely abolished in vitro when GRK2 was phosphorylated by PKC. These data suggest that calmodulin may be an inhibitor of GRK2 whose effects can be abolished with PKC-mediated phosphorylation of GRK2.

摘要

G蛋白偶联受体激酶(GRKs)是G蛋白偶联受体功能的重要调节因子。该家族的两个成员,即GRK2和GRK5,已被证明是蛋白激酶C(PKC)的底物。虽然PKC介导的磷酸化会导致GRK5的抑制,但它可能通过增加对含受体膜的亲和力来增加GRK2对其底物的活性。我们在此表明,这种活性增加可能是由于解除了钙调蛋白对GRK2的持续性抑制所致。在体外,GRK2优先被PKC同工型α、γ和δ磷酸化。对PKCα磷酸化的GRK2进行二维肽图谱分析显示了一个磷酸化位点,通过高效液相色谱-质谱法鉴定为丝氨酸29。GRK2的S29A突变体在体外不被PKC磷酸化,并且在转染到人胚肾(HEK)293细胞中时未显示佛波酯刺激的磷酸化。丝氨酸29位于GRK2的钙调蛋白结合区域,钙调蛋白与GRK2的结合会导致激酶活性的抑制。当GRK2被PKC磷酸化时,这种抑制在体外几乎完全消除。这些数据表明,钙调蛋白可能是GRK2的一种抑制剂,其作用可通过PKC介导的GRK2磷酸化而消除。

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