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视紫红质激酶的自磷酸化。位点特异性突变的特征分析。

Rhodopsin kinase autophosphorylation. Characterization of site-specific mutations.

作者信息

Palczewski K, Ohguro H, Premont R T, Inglese J

机构信息

Department of Ophthalmology, School of Medicine, University of Washington, Seattle 98195, USA.

出版信息

J Biol Chem. 1995 Jun 23;270(25):15294-8. doi: 10.1074/jbc.270.25.15294.

Abstract

Upon illumination, rhodopsin kinase (RK) phosphorylates the visual pigment rhodopsin, which is thought to partially terminate the biochemical events that follow photon absorption. RK enzymology was explored by mutagenesis of the residues Ser488, Thr489 (major autophosphorylation sites), and Lys491 (a distal residue). We found the following to be true. (i) Double mutations at residues Ser488 and Thr489 to Ala or Asp decrease autophosphorylation to substoichiometrical levels, while single mutations at either residue independently reduce autophosphorylation by half. (ii) Phosphorylation of residue Ser488 influences the affinity of RK for heparin-Sepharose only moderately, whereas Thr489 and Lys491 are important for this interaction. RK K491A does not phosphorylate acidic peptides, suggesting that this residue participates in substrate binding. (iii) Mutations in the autophosphorylation region affect the Km for ATP, suggesting that this region is involved in binding of ATP to the catalytic site. (iv) RK mutants S488A or S488D and RK S488A and T489A have an increased ability to phosphorylate Rho in the dark. (v) Mutations at the autophosphorylation region change the initial site of phosphorylation on photolyzed rhodopsin (Rho*), implying that this region may regulate selectivity of the site of phosphorylation.

摘要

在光照下,视紫红质激酶(RK)使视觉色素视紫红质磷酸化,据认为这会部分终止光子吸收后发生的生化事件。通过对丝氨酸488、苏氨酸489(主要自磷酸化位点)和赖氨酸491(一个远端残基)进行诱变来研究RK酶学。我们发现以下情况属实。(i)丝氨酸488和苏氨酸489位点突变为丙氨酸或天冬氨酸的双突变会将自磷酸化降低到亚化学计量水平,而任一残基的单突变会独立地将自磷酸化降低一半。(ii)丝氨酸488残基的磷酸化仅适度影响RK与肝素 - 琼脂糖的亲和力,而苏氨酸489和赖氨酸491对这种相互作用很重要。RK K491A不能使酸性肽磷酸化,表明该残基参与底物结合。(iii)自磷酸化区域的突变影响ATP的米氏常数(Km),表明该区域参与ATP与催化位点的结合。(iv)RK突变体S488A或S488D以及RK S488A和T489A在黑暗中磷酸化视紫红质(Rho)的能力增强。(v)自磷酸化区域的突变改变了光解视紫红质(Rho*)上磷酸化的起始位点,这意味着该区域可能调节磷酸化位点的选择性。

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