Olah G A, Mitchell R D, Sosnick T R, Walsh D A, Trewhella J
Isotope and Nuclear Chemistry Division, Los Alamos National Laboratory, New Mexico 87545.
Biochemistry. 1993 Apr 13;32(14):3649-57. doi: 10.1021/bi00065a018.
Small-angle X-ray scattering and Fourier transform infrared (FTIR) spectroscopy experiments have been completed on the catalytic subunit of the cAMP-dependent protein kinase. Measurements were made both with and without the protein kinase inhibitor peptide, PKI alpha(5-22)amide. Binding of the peptide results in an overall contraction of the structure that is characterized by a decrease of 9% in radius of gyration and about 16% in the maximum linear dimension. Both the secondary structure content of the protein/peptide complex, as determined by FTIR, and the solution structure of this binary complex, as determined by X-ray scattering, agree well with the structural characteristics of this complex as elucidated by the crystal structure [Knighton, D.R., Zheng, J., Ten Eyck, L. F., Ashford, V.A., Xuong, N.H., Taylor, S.S., & Sowadsi, J. M. (1991a) Science 253, 407-414]. Further, the contraction of the structure observed by X-ray scattering upon inhibitor peptide binding is not accompanied by any detectable change in secondary structure content of the kinase. We have modeled the contraction of the kinase upon inhibitor peptide binding as a simple rotation of the large and small lobes seen in the crystal structure such that the cleft between them is closed. For a substrate these changes would then allow catalysis to ensue. The hinge for this movement occurs around a glycine that is one of the protein kinase family consensus amino acids.
已对环磷酸腺苷(cAMP)依赖性蛋白激酶的催化亚基进行了小角X射线散射和傅里叶变换红外(FTIR)光谱实验。分别在有和没有蛋白激酶抑制剂肽PKIα(5 - 22)酰胺的情况下进行了测量。该肽的结合导致结构整体收缩,其特征是回转半径减小9%,最大线性尺寸减小约16%。由FTIR测定的蛋白质/肽复合物的二级结构含量以及由X射线散射测定的该二元复合物的溶液结构,与晶体结构所阐明的该复合物的结构特征[奈顿,D.R.,郑,J.,滕·艾克,L.F.,阿什福德,V.A.,徐昂,N.H.,泰勒,S.S.,&索瓦德西,J.M.(1991a)《科学》253,407 - 414]吻合得很好。此外,X射线散射观察到的抑制剂肽结合后激酶结构的收缩,并未伴随激酶二级结构含量的任何可检测变化。我们将抑制剂肽结合后激酶的收缩模拟为晶体结构中可见的大、小结构域的简单旋转,使得它们之间的裂隙闭合。对于底物而言,这些变化随后将引发催化作用。这种运动的铰链围绕着甘氨酸发生,该甘氨酸是蛋白激酶家族共有氨基酸之一。