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与牛心蛋白激酶结合的五肽和七肽底物的主链质子及二级结构的核磁共振研究

NMR studies of the backbone protons and secondary structure of pentapeptide and heptapeptide substrates bound to bovine heart protein kinase.

作者信息

Rosevear P R, Fry D C, Mildvan A S, Doughty M, O'Brian C, Kaiser E T

出版信息

Biochemistry. 1984 Jul 3;23(14):3161-73. doi: 10.1021/bi00309a009.

DOI:10.1021/bi00309a009
PMID:6466636
Abstract

The conformations of enzyme-bound pentapeptide (Arg-Arg-Ala-Ser-Leu) and heptapeptide (Leu-Arg-Arg-Ala-Ser-Leu-Gly) substrates of protein kinase have been studied by NMR in quaternary complexes of the type (Formula: see text). Paramagnetic effects of Mn2+ bound at the inhibitory site of the catalytic subunit on the longitudinal relaxation rates of backbone Ca protons, as well as on side-chain protons of the bound pentapeptide and heptapeptide substrates, have been used to determine Mn2+ to proton distances which range from 8.2 to 12.4 A. A combination of the paramagnetic probe-T1 method with the Redfield 2-1-4-1-2 pulse sequence for suppression of the water signal has been used to measure distances from Mn2+ to all of the backbone amide (NH) protons of the bound pentapeptide and heptapeptide substrates, which range from 6.8 to 11.1 A. Paramagnetic effects on the transverse relaxation rates yield rate constants for peptide exchange, indicating that the complexes studied by NMR dissociate rapidly enough to participate in catalysis. Model-building studies based on the Mn2+-proton distances, as well as on previously determined distances from Cr3+-AMPPCP to side-chain protons [Granot, J., Mildvan, A.S., Bramson, H. N., & Kaiser, E. T. (1981) Biochemistry 20, 602], rule out alpha-helical, beta-sheet, beta-bulge, and all possible beta-turn conformations within the bound pentapeptide and heptapeptide substrates. The distances are fit only by extended coil conformations for the bound peptide substrates with a minor difference between the pentapeptides and heptapeptides in the phi torsional angle at Arg3C alpha and in psi at Arg2C alpha. An extended coil conformation, which minimizes the number of interactions within the substrate, would facilitate enzyme-substrate interaction and could thereby contribute to the specificity of protein kinase.

摘要

通过核磁共振(NMR)在(分子式:见文本)类型的四级复合物中研究了蛋白激酶的酶结合五肽(精氨酸 - 精氨酸 - 丙氨酸 - 丝氨酸 - 亮氨酸)和七肽(亮氨酸 - 精氨酸 - 精氨酸 - 丙氨酸 - 丝氨酸 - 亮氨酸 - 甘氨酸)底物的构象。结合在催化亚基抑制位点的Mn²⁺对主链Ca质子以及结合的五肽和七肽底物侧链质子纵向弛豫速率的顺磁效应,已被用于确定Mn²⁺与质子之间的距离,范围为8.2至12.4埃。顺磁探针 - T1方法与用于抑制水信号的Redfield 2 - 1 - 4 - 1 - 2脉冲序列相结合,已用于测量Mn²⁺与结合的五肽和七肽底物所有主链酰胺(NH)质子之间的距离,范围为6.8至11.1埃。对横向弛豫速率的顺磁效应产生了肽交换的速率常数,表明通过NMR研究的复合物解离速度足够快,能够参与催化作用。基于Mn²⁺ - 质子距离以及先前确定的从Cr³⁺ - AMPPCP到侧链质子的距离[格拉诺特,J.,米尔德万,A.S.,布拉姆森,H.N.,& 凯泽,E.T.(1981年)《生物化学》20,602]进行模型构建研究,排除了结合的五肽和七肽底物内的α - 螺旋、β - 折叠、β - 凸起以及所有可能的β - 转角构象。这些距离仅与结合肽底物的伸展螺旋构象相符,五肽和七肽在Arg3Cα处的φ扭转角以及Arg2Cα处的ψ扭转角存在微小差异。伸展螺旋构象使底物内的相互作用数量最小化,这将促进酶 - 底物相互作用,从而可能有助于蛋白激酶的特异性。

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