Suppr超能文献

半胱氨酸-191与半胱氨酸-220二硫键在凝血酶功能及变构调节中的重要作用。

Important role of the cys-191 cys-220 disulfide bond in thrombin function and allostery.

作者信息

Bush-Pelc Leslie A, Marino Francesca, Chen Zhiwei, Pineda Agustin O, Mathews F Scott, Di Cera Enrico

机构信息

Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, Missouri 63110.

Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Biol Chem. 2007 Sep 14;282(37):27165-27170. doi: 10.1074/jbc.M703202200. Epub 2007 Jul 18.

Abstract

Little is known on the role of disulfide bonds in the catalytic domain of serine proteases. The Cys-191-Cys-220 disulfide bond is located between the 190 strand leading to the oxyanion hole and the 220-loop that contributes to the architecture of the primary specificity pocket and the Na+ binding site in allosteric proteases. Removal of this bond in thrombin produces an approximately 100-fold loss of activity toward several chromogenic and natural substrates carrying Arg or Lys at P1. Na+ activation is compromised, and no fluorescence change can be detected in response to Na+ binding. A 1.54-A resolution structure of the C191A/C220A mutant in the free form reveals a conformation similar to the Na+-free slow form of wild type. The lack of disulfide bond exposes the side chain of Asp-189 to solvent, flips the backbone O atom of Gly-219, and generates disorder in portions of the 186 and 220 loops defining the Na+ site. This conformation, featuring perturbation of the Na+ site but with the active site accessible to substrate, offers a possible representation of the recently identified E* form of thrombin. Disorder in the 186 and 220 loops and the flip of Gly-219 are corrected by the active site inhibitor H-D-Phe-Pro-Arg-CH(2)Cl, as revealed by the 1.8-A resolution structure of the complex. We conclude that the Cys-191-Cys-220 disulfide bond confers stability to the primary specificity pocket by shielding Asp-189 from the solvent and orients the backbone O atom of Gly-219 for optimal substrate binding. In addition, the disulfide bond stabilizes the 186 and 220 loops that are critical for Na+ binding and activation.

摘要

关于二硫键在丝氨酸蛋白酶催化结构域中的作用,人们了解甚少。半胱氨酸191 - 半胱氨酸220二硫键位于通向氧阴离子洞的190链与有助于构建主要特异性口袋和变构蛋白酶中钠离子结合位点的220环之间。凝血酶中该二硫键的去除会导致其对几种在P1位点带有精氨酸或赖氨酸的生色底物和天然底物的活性丧失约100倍。钠离子激活受到损害,并且未检测到因钠离子结合而产生的荧光变化。游离形式的C191A/C220A突变体的1.54埃分辨率结构显示出与野生型无钠离子的慢形式相似的构象。二硫键的缺失使天冬氨酸189的侧链暴露于溶剂中,翻转了甘氨酸219的主链O原子,并在定义钠离子位点的186环和220环的部分区域产生无序。这种构象以钠离子位点的扰动为特征,但活性位点可被底物接近,它可能代表了最近鉴定出的凝血酶E*形式。活性位点抑制剂H-D-苯丙氨酸-脯氨酸-精氨酸-CH₂Cl校正了186环和220环中的无序以及甘氨酸219的翻转,复合物的1.8埃分辨率结构显示了这一点。我们得出结论,半胱氨酸191 - 半胱氨酸220二硫键通过保护天冬氨酸189免受溶剂影响,赋予主要特异性口袋稳定性,并使甘氨酸219的主链O原子定向以实现最佳底物结合。此外,二硫键稳定了对钠离子结合和激活至关重要的186环和220环。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验