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p38-α丝裂原活化蛋白激酶的动力学机制:磷酸转移至合成肽段

Kinetic mechanism of the p38-alpha MAP kinase: phosphoryl transfer to synthetic peptides.

作者信息

Chen G, Porter M D, Bristol J R, Fitzgibbon M J, Pazhanisamy S

机构信息

Vertex Pharmaceuticals Inc., 130 Waverly Street, Cambridge, Massachusetts 02139-4242, USA.

出版信息

Biochemistry. 2000 Feb 29;39(8):2079-87. doi: 10.1021/bi9919495.

Abstract

p38 is a member of the mitogen-activated protein (MAP) kinase family. Activation (phosphorylation) of p38 acts as a switch for the transcriptional and translational regulation of a number of proteins, including the proinflammatory cytokines. Investigation of a set of small peptides revealed that, as with protein substrates, p38-alpha behaves as a proline-directed Ser/Thr MAP kinase for a peptide substrate, peptide 4 (IPTSPITTTYFFFKKK). We investigated the steady-state kinetic mechanism of the p38-alpha-catalyzed kinase reaction with EGF receptor peptide, peptide 1, as a substrate. Lineweaver-Burk analysis of the substrate kinetics yielded a family of lines intersecting to the left of the ordinate, with either ATP or peptide 1 as the varied substrate. Kinetic analysis in the presence of ADP yielded a competitive inhibition pattern when ATP was the varied substrate and a noncompetitive pattern if peptide 1 was the varied substrate. At saturating peptide substrate concentrations, inhibition by phosphopeptide product yielded an uncompetitive pattern when ATP was the varied substrate. These data are consistent with ordered binding with ATP as the initial substrate. We provide further evidence of the existence of a productive p38.ATP binary complex in that (a) activated p38-alpha has intrinsic ATPase activity, (b) ATPase and kinase activities are coupled, and (c) inhibitors of ATPase activity also inhibit the kinase activity with a similar inhibition constant. The k(cat) for the kinase reaction was lowered by 1.8-fold when ATP-gamma-S was used. Microviscosity linearly affected the k(cat) values of both the ATP and ATP-gamma-S reactions with a slope of about 0.8. These observations were interpreted to mean that the phosphoryl transfer step is not rate-limiting and that the release of product and/or enzyme isomerization is a possible rate-limiting step(s).

摘要

p38是丝裂原活化蛋白(MAP)激酶家族的成员。p38的激活(磷酸化)充当许多蛋白质(包括促炎细胞因子)转录和翻译调控的开关。对一组小肽的研究表明,与蛋白质底物一样,p38-α对于肽底物肽4(IPTSPITTTYFFFKKK)表现为脯氨酸定向的丝氨酸/苏氨酸MAP激酶。我们以表皮生长因子受体肽肽1为底物,研究了p38-α催化的激酶反应的稳态动力学机制。对底物动力学进行的Lineweaver-Burk分析产生了一组在纵坐标左侧相交的直线,以ATP或肽1作为可变底物。在存在ADP的情况下进行动力学分析,当ATP为可变底物时产生竞争性抑制模式,而当肽1为可变底物时产生非竞争性模式。在饱和肽底物浓度下,当ATP为可变底物时,磷酸肽产物的抑制产生非竞争性模式。这些数据与以ATP作为初始底物的有序结合一致。我们提供了进一步的证据证明存在有活性的p38·ATP二元复合物:(a)活化的p38-α具有内在ATP酶活性,(b)ATP酶和激酶活性相互偶联;(c)ATP酶活性抑制剂也以相似的抑制常数抑制激酶活性。当使用ATP-γ-S时,激酶反应的k(cat)降低了1.8倍。微粘度线性影响ATP和ATP-γ-S反应的k(cat)值,斜率约为0.8。这些观察结果被解释为意味着磷酰基转移步骤不是限速步骤,产物释放和/或酶异构化可能是限速步骤。

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