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氨基酸侧链与预先形成的腔的结合:丝氨酸蛋白酶与具有编码和非编码P1残基的火鸡卵类黏蛋白第三结构域的相互作用。

Binding of amino acid side chains to preformed cavities: interaction of serine proteinases with turkey ovomucoid third domains with coded and noncoded P1 residues.

作者信息

Bigler T L, Lu W, Park S J, Tashiro M, Wieczorek M, Wynn R, Laskowski M

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-1393.

出版信息

Protein Sci. 1993 May;2(5):786-99. doi: 10.1002/pro.5560020509.

Abstract

In the association of serine proteinases with their cognate substrates and inhibitors an important interaction is the fitting of the P1 side chain of the substrate or inhibitor into a preformed cavity of the enzyme called the S1 pocket. In turkey ovomucoid third domain, which is a canonical protein proteinase inhibitor, the P1 residue is Leu18. Here we report the values of equilibrium constants, Ka, for turkey ovomucoid third domain and 13 additional Leu18X variants with six serine proteinases: bovine alpha chymotrypsin A, porcine pancreatic elastase, subtilisin Carlsberg, Streptomyces griseus proteinases A and B, and human leukocyte elastase. Eight of the Xs are coded amino acids: Ala, Ser, Val, Met, Gln, Glu, Lys, and Phe, and five are noncoded: Abu, Ape, Ahx, Ahp, and Hse. They were chosen to simplify the interamino acid comparisons. In the homologous series of straight-chain side chains Ala, Abu, Ape, Ahx, Ahp, free energy of binding decreases monotonically with the side-chain length for chymotrypsin with large binding pocket, but even for this enzyme shows curvature. For the two S. griseus enzymes a minimum appears to be reached at Ahp. A minimum is clearly evident for the two elastases, where increasing the side-chain length from Ahx to Ahp greatly weakens binding, but much more so for the apparently more rigid pancreatic enzyme than for the more flexible leukocyte enzyme. beta-Branching (Ape/Val) is very deleterious for five of the six enzymes; it is only slightly deleterious for the more flexible human leukocyte elastase. The effect of gamma-branching (Ahx/Leu), of introduction of heteroatoms (Abu/Ser), (Ape/Hse), and (Ahx/Met), and of introduction of charge (Gln/Glu) and (Ahp/Lys) are tabulated and discussed. An important component of the free energy of interaction is the distortion of the binding pocket by bulky or branched side chains. Most of the variants studied were obtained by enzymatic semisynthesis. X18 variants of the 6-18 peptide GlyNH2 were synthesized and combined with natural reduced peptide 19-56. Disulfide bridges were formed. The GlyNH2 was removed and the reactive-site peptide bond X18-Glu19 was synthesized by complex formation with proteinase K. The resultant complexes were dissociated by sudden pH drop. This kinetically controlled dissociation afforded virgin, reactive-site-intact inhibitor variants.

摘要

在丝氨酸蛋白酶与其同源底物及抑制剂的结合过程中,一个重要的相互作用是底物或抑制剂的P1侧链适配到酶的一个预先形成的腔中,该腔称为S1口袋。在火鸡卵类黏蛋白第三结构域(一种典型的蛋白质蛋白酶抑制剂)中,P1残基是Leu18。在此,我们报告了火鸡卵类黏蛋白第三结构域以及另外13种Leu18X变体与六种丝氨酸蛋白酶的平衡常数Ka值:牛α-胰凝乳蛋白酶A、猪胰弹性蛋白酶、嗜热栖热菌蛋白酶、灰色链霉菌蛋白酶A和B以及人白细胞弹性蛋白酶。其中八个X是编码氨基酸:丙氨酸、丝氨酸、缬氨酸、甲硫氨酸、谷氨酰胺、谷氨酸、赖氨酸和苯丙氨酸,另外五个是非编码的:氨基丁酸、氨基乙基脯氨酸、α-氨基己酸、α-氨基戊酸和羟丝氨酸。选择它们是为了简化氨基酸之间的比较。在直链侧链丙氨酸、氨基丁酸、氨基乙基脯氨酸、α-氨基己酸、α-氨基戊酸的同源系列中,对于具有大结合口袋的胰凝乳蛋白酶,结合自由能随侧链长度单调下降,但即使对于这种酶也呈现出曲线关系。对于两种灰色链霉菌酶,在α-氨基戊酸处似乎达到最小值。对于两种弹性蛋白酶,最小值明显可见,从α-氨基己酸到α-氨基戊酸增加侧链长度会大大削弱结合,但对于明显更刚性的胰弹性蛋白酶而言比对于更灵活的白细胞弹性蛋白酶更为明显。β-分支(氨基乙基脯氨酸/缬氨酸)对六种酶中的五种非常有害;对更灵活的人白细胞弹性蛋白酶仅略有有害。列出并讨论了γ-分支(α-氨基己酸/亮氨酸)、杂原子引入(氨基丁酸/丝氨酸)、(氨基乙基脯氨酸/羟丝氨酸)和(α-氨基己酸/甲硫氨酸)以及电荷引入(谷氨酰胺/谷氨酸)和(α-氨基戊酸/赖氨酸)的影响。相互作用自由能的一个重要组成部分是大的或分支的侧链对结合口袋的扭曲。所研究的大多数变体是通过酶促半合成获得的。合成了6 - 18肽GlyNH2的X18变体,并与天然还原肽19 - 56结合。形成了二硫键。去除GlyNH2,并通过与蛋白酶K形成复合物合成反应位点肽键X18 - Glu19。通过突然降低pH使所得复合物解离。这种动力学控制的解离产生了原始的、反应位点完整的抑制剂变体。

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