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关于丝氨酸-16在苯丙氨酸羟化酶活性调节中作用的进一步研究。

Further studies of the role of Ser-16 in the regulation of the activity of phenylalanine hydroxylase.

作者信息

Kowlessur D, Yang X J, Kaufman S

机构信息

Laboratory of Neurochemistry, National Institute of Mental Health, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 May 23;92(11):4743-7. doi: 10.1073/pnas.92.11.4743.

Abstract

It was previously proposed that the activation of rat liver phenylalanine hydroxylase (EC 1.14.16.1) by cAMP-dependent protein kinase-mediated phosphorylation of Ser-16 is due to the introduction of the negatively charged phosphate group. To explore the validity of this proposal, we have applied site-directed mutagenesis to specifically replace Ser-16 with negatively charged amino acids, glutamic and aspartic; with polar uncharged amino acids, asparagine and glutamine; with the positively charged amino acid lysine; and with the nonpolar hydrophobic amino acid alanine. The wild-type and mutant enzymes were purified to homogeneity, and the importance of Ser-16 in the activation of phenylalanine hydroxylase was examined by comparing the state of activation of the phosphorylated form of the wild-type hydroxylase with that of the mutants. The kinetic studies carried out on the wild-type phosphorylated hydroxylase showed that all the activation could be accounted for by an increase in Vmax with no change in Km for either phenylalanine or the pterin cofactor. Replacement of Ser-16 with a negatively charged residue, glutamate of aspartate, resulted in the activation of the hydroxylase by 2- to 4-fold, whereas replacement with glutamine, asparagine, lysine, or alanine resulted in a much more modest increase. Further, lysolecithin was found to stimulate the phosphorylated hydroxylase and the mutant enzymes S16E and S16D by a factor of 6-7. In contrast, the mutants S16Q, S16N, and S16A all showed the same magnitude of activation as the wild-type with lysolecithin. Therefore, this study demonstrates that activation of the enzyme by phosphorylation of Ser-16 by cAMP-dependent protein kinase is due to the introduction of negative charge(s) and strongly suggests the involvement of electrostatic interaction between the regulatory and catalytic domains of the hydroxylase.

摘要

先前有人提出,环磷酸腺苷(cAMP)依赖性蛋白激酶介导的丝氨酸16磷酸化激活大鼠肝脏苯丙氨酸羟化酶(EC 1.14.16.1)是由于引入了带负电荷的磷酸基团。为了探究这一观点的正确性,我们应用定点诱变技术,将丝氨酸16分别特异性替换为带负电荷的氨基酸谷氨酸和天冬氨酸;极性不带电荷的氨基酸天冬酰胺和谷氨酰胺;带正电荷的氨基酸赖氨酸;以及非极性疏水氨基酸丙氨酸。将野生型和突变型酶纯化至同质状态,通过比较野生型羟化酶磷酸化形式与突变体的激活状态,研究了丝氨酸16在苯丙氨酸羟化酶激活中的重要性。对野生型磷酸化羟化酶进行的动力学研究表明,所有激活作用都可归因于Vmax的增加,而苯丙氨酸或蝶呤辅因子的Km没有变化。用带负电荷的残基谷氨酸或天冬氨酸取代丝氨酸16,导致羟化酶激活2至4倍,而用谷氨酰胺、天冬酰胺、赖氨酸或丙氨酸取代则导致增幅小得多。此外,发现溶血卵磷脂可使磷酸化羟化酶以及突变体酶S16E和S16D的活性提高6至7倍。相比之下,突变体S16Q、S16N和S16A在溶血卵磷脂作用下的激活程度与野生型相同。因此,本研究表明,cAMP依赖性蛋白激酶对丝氨酸16的磷酸化激活该酶是由于引入了负电荷,并强烈提示羟化酶的调节域和催化域之间存在静电相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35a7/41783/8d5448914eb2/pnas01487-0034-a.jpg

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