Sreenivasan U, Axelsen P H
Department of Biochemistry and Molecular Biology, Mayo Clinic and Foundation, Rochester, Minnesota 55905.
Biochemistry. 1992 Dec 29;31(51):12785-91. doi: 10.1021/bi00166a011.
Buried water molecules in the structurally homologous family of eukaryotic serine proteases were examined to determine whether buried waters and their protein environments are conserved in these proteins. We found 16 equivalent water sites conserved in trypsin/ogen, chymotrypsin/ogen, elastase, kallikrein, thrombin, rat tonin and rat mast cell protease, and 5 additional water sites in enzymes which share the primary specificity of trypsin. Based on an alignment of 30 serine protease sequences, it appears that the protein environments of these 21 conserved buried waters are highly conserved. The protein environments of buried waters are comprised primarily of atoms from highly conserved residues or main chain atoms from nonconserved residues. In one instance, the protein environment of a water is conserved even in the presence of an unlikely Pro/Ala substitution. We also note 3 instances in which a histidine side chain substitutes for water, suggesting that the structural role of water at these sites is satisfied by the presence of an alternative hydrogen bonding partner. Buried waters appear to be integral structural components of these proteins and should be incorporated into protein structures predicted on the basis of sequence homology to this family, including the catalytic domains of coagulation proteases.
对真核丝氨酸蛋白酶结构同源家族中埋藏的水分子进行了研究,以确定这些蛋白质中埋藏的水分子及其蛋白质环境是否保守。我们发现在胰蛋白酶/原、胰凝乳蛋白酶/原、弹性蛋白酶、激肽释放酶、凝血酶、大鼠托宁和大鼠肥大细胞蛋白酶中,有16个等效的水位点是保守的,在具有胰蛋白酶主要特异性的酶中还有另外5个水位点。基于30个丝氨酸蛋白酶序列的比对,这21个保守埋藏水分子的蛋白质环境似乎高度保守。埋藏水分子的蛋白质环境主要由高度保守残基的原子或非保守残基的主链原子组成。在一个实例中,即使存在不太可能的脯氨酸/丙氨酸替代,水的蛋白质环境也是保守的。我们还注意到有3个实例,其中组氨酸侧链替代了水,这表明这些位点上的水的结构作用可由替代氢键供体的存在来满足。埋藏的水分子似乎是这些蛋白质不可或缺的结构成分,应纳入基于与该家族序列同源性预测的蛋白质结构中,包括凝血蛋白酶的催化结构域。