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首页> 外文期刊>Protein and peptide letters >The structural determinations of the leucine zipper coiled-coil domains of the cGMP-dependent protein kinase Iα and its interaction with the myosin binding subunit of the myosin light chains phosphase
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The structural determinations of the leucine zipper coiled-coil domains of the cGMP-dependent protein kinase Iα and its interaction with the myosin binding subunit of the myosin light chains phosphase

机译:cGMP依赖性蛋白激酶Iα的亮氨酸拉链卷曲螺旋结构域的结构测定及其与肌球蛋白轻链磷酸酶的肌球蛋白结合亚基的相互作用

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Physiologic relaxation of vascular smooth muscle is induced by the cyclic guanosine monophosphate (cGMP)- dependent protein kinase Iα enzyme (cGKIα), which activates myosin phosphatase (MLCP). This activation process is thought to occur through the interaction involving both N- and C-terminal leucine zipper coiled-coil (LZCC) domains of the kinase enzyme (cGKIα) with the myosin binding subunit (MBS) of MLCP. In this review, I summarize how to define the LZCC domains in both N-terminal cGKIα ~(1-59)and C-terminal MBS proteins using predictive and experimental methods, how to make a rapid and accurate structure determination of a cGKIα~(1-59) molecule using NMR's residual dipolar coupling (RDC) measurements, and how to indentify the existence of a weak protein interaction between N-terminal LZCC domain (cGKIα~(1-59)) and a LZCC domain (MBSCT42) within the C-terminal MBS. In addition, the location and orientation of the residues in LZCC proteins can be readily visualized using a novel diagram, the so-called "wenxiang diagram", which is more advantageous than traditional helical wheel diagrams in analyzing LZCC protein structures and their action mechanisms. Using the composed wenxiang diagrams, we have characterized the interaction between cGKIα~(1-59) and another LZCC molecule (MBS_(CT42)), and deduced that the most affected residues of these two LZCC molecules might be at the positions d, a, e and g. These studies and findings are also covered in this review. It is intriguing to see that the successful incorporation of wenxiang diagrams and NMR spectroscopy in the LZCC structural and functional studies may provide some insights into protein-protein interaction mechanisms.
机译:环状鸟苷单磷酸(cGMP)依赖性蛋白激酶Iα酶(cGKIα)诱导血管平滑肌的生理松弛,该酶激活肌球蛋白磷酸酶(MLCP)。认为该活化过程是通过涉及激酶酶(cGKIα)的N和C端亮氨酸拉链卷曲螺旋(LZCC)域与MLCP的肌球蛋白结合亚基(MBS)相互作用而发生的。在这篇综述中,我总结了如何使用预测性和实验性方法在N末端cGKIα〜(1-59)和C末端MBS蛋白中定义LZCC结构域,如何快速准确地确定cGKIα〜( 1-59)分子,使用NMR的残留偶极耦合(RDC)测量,以及如何识别N末端LZCC域(cGKIα〜(1-59))和LZCC域(MBSCT42)之间存在弱的蛋白质相互作用。 C端MBS。另外,可以使用新颖的图,即所谓的“文香图”容易地看到LZCC蛋白中残基的位置和取向,在分析LZCC蛋白结构及其作用机理方面,它比传统的螺旋轮图更有利。使用组成的文祥图,我们表征了cGKIα〜(1-59)与另一个LZCC分子(MBS_(CT42))之间的相互作用,并推论出这两个LZCC分子中受影响最大的残基可能在d,a位置,e和g。这些研究和发现也包含在本评价中。令人感兴趣的是,文祥图和NMR光谱法在LZCC结构和功能研究中的成功结合可以为蛋白质相互作用机制提供一些见识。

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