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丝氨酸蛋白酶的催化位点作为氙的特异性结合腔。

The catalytic site of serine proteinases as a specific binding cavity for xenon.

作者信息

Schiltz M, Fourme R, Broutin I, Prangé T

机构信息

LURE (CNRS, CEA, MESR), Université Paris-Sud, Orsay, France.

出版信息

Structure. 1995 Mar 15;3(3):309-16. doi: 10.1016/s0969-2126(01)00161-7.

Abstract

BACKGROUND

Under moderate pressure, xenon can bind to proteins and form weak but specific interactions. Such protein-xenon complexes can be used as isomorphous derivatives for phase determination in X-ray crystallography.

RESULTS

Investigation of the serine proteinase class of enzymes shows that the catalytic triad, the common hydrolytic motif of these enzymes, is a specific binding site for one xenon atom and shows high occupancy at pressures below 12 bar. Complexes of xenon with two different serine proteinases, elastase and collagenase, were analyzed and refined to 2.2 A and 2.5 A resolution, respectively. In both cases, a single xenon atom with a low temperature factor is located in the active site at identical positions. Weak interactions exist with several side chains of conserved amino acids at the active site. Xenon binding does not induce any major changes in the protein structure and, as a consequence, crystals of the xenon complexes are highly isomorphous with the native protein structures. Xenon is also found to bind to the active site of subtilisin Carlsberg, a bacterial serine proteinase, that also has a catalytic triad motif.

CONCLUSIONS

As the region around the active site shows conserved structural homology in all serine proteinases, it is anticipated that xenon binding will prove to be a general feature of this class of proteins.

摘要

背景

在适度压力下,氙可与蛋白质结合并形成弱但特异的相互作用。此类蛋白质 - 氙复合物可作为同晶型衍生物用于X射线晶体学中的相位测定。

结果

对丝氨酸蛋白酶类酶的研究表明,催化三联体作为这些酶常见的水解基序,是一个氙原子的特异性结合位点,在低于12巴的压力下占有率较高。分析并分别将氙与两种不同的丝氨酸蛋白酶(弹性蛋白酶和胶原酶)的复合物精修至2.2埃和2.5埃分辨率。在这两种情况下,一个具有低温因子的单个氙原子位于活性位点的相同位置。与活性位点处保守氨基酸的几个侧链存在弱相互作用。氙的结合不会引起蛋白质结构的任何重大变化,因此,氙复合物的晶体与天然蛋白质结构高度同晶型。还发现氙与枯草杆菌蛋白酶卡尔伯格(一种也具有催化三联体基序的细菌丝氨酸蛋白酶)的活性位点结合。

结论

由于活性位点周围区域在所有丝氨酸蛋白酶中显示出保守的结构同源性,预计氙结合将被证明是这类蛋白质的一个普遍特征。

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