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纤溶酶原激活蛋白葡萄球菌激酶的核磁共振溶液结构

Nuclear magnetic resonance solution structure of the plasminogen-activator protein staphylokinase.

作者信息

Ohlenschläger O, Ramachandran R, Gührs K H, Schlott B, Brown L R

机构信息

Department of Molecular Biophysics and NMR Spectroscopy, Institute for Molecular Biotechnology, Jena, Germany.

出版信息

Biochemistry. 1998 Jul 28;37(30):10635-42. doi: 10.1021/bi980673i.

Abstract

Staphylokinase, a 15.5 kDa protein from Staphylococcus aureus, is a plasminogen activator which is currently undergoing clinical trials for the therapy of myocardial infarction and peripheral thrombosis. The three-dimensional (3D) NMR solution structure has been determined by multidimensional heteronuclear NMR spectroscopy on uniformly 15N- and 15N,13C-labeled samples of staphylokinase. Structural constraints were obtained from 82 3JHNH alpha as well as 22 3JNH beta scalar coupling constants and 2345 NOE cross-peaks, derived from 15N-edited and 13C-edited 3D NOE spectra. NOE cross-peak assignments were confirmed by analysis of ¿15N,13C¿-edited and ¿13C,13C¿-edited 4D NOE spectra. The structure is presented as a family of 20 conformers which show an average rmsd of 1.02 +/- 0.15 A from the mean structure for the backbone atoms. The tertiary structure of staphylokinase shows a well-defined global structure consisting of a central 13-residue alpha-helix flanked by a two-stranded beta-sheet, both of which are located above a five-stranded beta-sheet. Two of the connecting loops exhibit a higher conformational heterogeneity. Overall, staphylokinase shows a strong asymmetry of hydrophilic and hydrophobic surfaces. The N-terminal sequence, including Lys10 which is the site of the initial proteolytic cleavage during activation of plasminogen, folds back onto the protein core, thereby shielding amino acids with functional importance in the plasminogen activation process. From a comparison of the structure with mutational studies, a binding region for plasminogen is proposed.

摘要

葡萄球菌激酶是一种来自金黄色葡萄球菌的15.5 kDa蛋白质,是一种纤溶酶原激活剂,目前正在进行治疗心肌梗死和外周血栓形成的临床试验。已通过对15N和15N、13C均匀标记的葡萄球菌激酶样品进行多维异核核磁共振光谱测定了其三维(3D)核磁共振溶液结构。结构约束来自82个3JHNHα以及22个3JNHβ标量耦合常数和2345个NOE交叉峰,这些交叉峰源自15N编辑和13C编辑的3D NOE光谱。通过分析15N、13C编辑和13C、13C编辑的4D NOE光谱确认了NOE交叉峰的归属。该结构以20个构象体的家族形式呈现,其主链原子与平均结构的平均均方根偏差为1.02±0.15 Å。葡萄球菌激酶的三级结构显示出一个明确的整体结构,由一个中央的13个残基的α螺旋和两侧的一个双链β折叠组成,两者都位于一个五链β折叠上方。其中两个连接环表现出较高的构象异质性。总体而言,葡萄球菌激酶在亲水和疏水表面表现出强烈的不对称性。N端序列,包括赖氨酸10(纤溶酶原激活过程中初始蛋白水解切割的位点),折叠回到蛋白质核心,从而屏蔽了在纤溶酶原激活过程中具有功能重要性的氨基酸。通过将该结构与突变研究进行比较,提出了纤溶酶原的结合区域。

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