Onorato J J, Palczewski K, Regan J W, Caron M G, Lefkowitz R J, Benovic J L
Department of Medicine, Howard Hughes Medical Institute, Duke University Medical Center, Durham, North Carolina 27710.
Biochemistry. 1991 May 28;30(21):5118-25. doi: 10.1021/bi00235a002.
The beta-adrenergic receptor kinase (beta-ARK) phosphorylates G protein coupled receptors in an agonist-dependent manner. Since the exact sites of receptor phosphorylation by beta-ARK are poorly defined, the identification of substrate amino acids that are critical to phosphorylation by the kinase are also unknown. In this study, a peptide whose sequence is present in a portion of the third intracellular loop region of the human platelet alpha 2-adrenergic receptor is shown to serve as a substrate for beta-ARK. Removal of the negatively charged amino acids surrounding a cluster of serines in this alpha 2-peptide resulted in a complete loss of phosphorylation by the kinase. A family of peptides was synthesized to further study the role of acidic amino acids in peptide substrates of beta-ARK. By kinetic analyses of the phosphorylation reactions, beta-ARK exhibited a marked preference for negatively charged amino acids localized to the NH2-terminal side of a serine or threonine residue. While there were no significant differences between glutamic and aspartic acid residues, serine-containing peptides were 4-fold better substrates than threonine. Comparing a variety of kinases, only rhodopsin kinase and casein kinase II exhibited significant phosphorylation of the acidic peptides. Unlike beta-ARK, RK preferred acid residues localized to the carboxyl-terminal side of the serine. A feature common to beta-ARK and RK was a much greater Km for peptide substrates as compared to that for intact receptor substrates.
β-肾上腺素能受体激酶(β-ARK)以激动剂依赖的方式使G蛋白偶联受体磷酸化。由于β-ARK对受体磷酸化的确切位点尚不明确,该激酶磷酸化所必需的底物氨基酸也未知。在本研究中,一种其序列存在于人类血小板α2-肾上腺素能受体第三个细胞内环区域一部分的肽被证明是β-ARK的底物。去除该α2-肽中丝氨酸簇周围的带负电荷氨基酸会导致激酶完全失去磷酸化作用。合成了一系列肽以进一步研究酸性氨基酸在β-ARK肽底物中的作用。通过对磷酸化反应的动力学分析,β-ARK对位于丝氨酸或苏氨酸残基氨基末端一侧的带负电荷氨基酸表现出明显偏好。虽然谷氨酸和天冬氨酸残基之间没有显著差异,但含丝氨酸的肽作为底物比含苏氨酸的肽好4倍。比较多种激酶,只有视紫红质激酶和酪蛋白激酶II对酸性肽有显著的磷酸化作用。与β-ARK不同,视紫红质激酶更喜欢位于丝氨酸羧基末端一侧的酸性残基。β-ARK和视紫红质激酶的一个共同特点是,与完整受体底物相比,它们对肽底物的Km值要大得多。