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当天冬氨酸残基处于β-折叠区域时导致蛋白质稳定性降低的因素。

Factors contributing to decreased protein stability when aspartic acid residues are in beta-sheet regions.

作者信息

Pokkuluri P R, Gu M, Cai X, Raffen R, Stevens F J, Schiffer M

机构信息

Argonne National Laboratory, Biosciences Division, 9700 S Cass Avenue, Argonne, IL 60439, USA.

出版信息

Protein Sci. 2002 Jul;11(7):1687-94. doi: 10.1110/ps.4920102.

Abstract

Asp residues are significantly under represented in beta-sheet regions of proteins, especially in the middle of beta-strands, as found by a number of studies using statistical, modeling, or experimental methods. To further understand the reasons for this under representation of Asp, we prepared and analyzed mutants of a beta-domain. Two Gln residues of the immunoglobulin light-chain variable domain (V(L)) of protein Len were replaced with Asp, and then the effects of these changes on protein stability and protein structure were studied. The replacement of Q38D, located at the end of a beta-strand, and that of Q89D, located in the middle of a beta-strand, reduced the stability of the parent immunoglobulin V(L) domain by 2.0 kcal/mol and 5.3 kcal/mol, respectively. Because the Q89D mutant of the wild-type V(L)-Len domain was too unstable to be expressed as a soluble protein, we prepared the Q89D mutant in a triple mutant background, V(L)-Len M4L/Y27dD/T94H, which was 4.2 kcal/mol more stable than the wild-type V(L)-Len domain. The structures of mutants V(L)-Len Q38D and V(L)-Len Q89D/M4L/Y27dD/T94H were determined by X-ray diffraction at 1.6 A resolution. We found no major perturbances in the structures of these Q-->D mutant proteins relative to structures of the parent proteins. The observed stability changes have to be accounted for by cumulative effects of the following several factors: (1) by changes in main-chain dihedral angles and in side-chain rotomers, (2) by close contacts between some atoms, and, most significantly, (3) by the unfavorable electrostatic interactions between the Asp side chain and the carbonyls of the main chain. We show that the Asn side chain, which is of similar size but neutral, is less destabilizing. The detrimental effect of Asp within a beta-sheet of an immunoglobulin-type domain can have very serious consequences. A somatic mutation of a beta-strand residue to Asp could prevent the expression of the domain both in vitro and in vivo, or it could contribute to the pathogenic potential of the protein in vivo.

摘要

多项使用统计、建模或实验方法的研究发现,天冬氨酸(Asp)残基在蛋白质的β折叠区域中明显不足,尤其是在β链的中间部分。为了进一步了解Asp含量不足的原因,我们制备并分析了一个β结构域的突变体。将蛋白质Len免疫球蛋白轻链可变结构域(V(L))中的两个谷氨酰胺(Gln)残基替换为天冬氨酸,然后研究这些变化对蛋白质稳定性和蛋白质结构的影响。位于β链末端的Q38D替换以及位于β链中间的Q89D替换,分别使亲本免疫球蛋白V(L)结构域的稳定性降低了2.0千卡/摩尔和5.3千卡/摩尔。由于野生型V(L)-Len结构域的Q89D突变体过于不稳定,无法作为可溶性蛋白表达,我们在三重突变背景V(L)-Len M4L/Y27dD/T94H中制备了Q89D突变体,该三重突变体比野生型V(L)-Len结构域稳定4.2千卡/摩尔。通过X射线衍射在1.6埃分辨率下测定了突变体V(L)-Len Q38D和V(L)-Len Q89D/M4L/Y27dD/T94H的结构。我们发现相对于亲本蛋白质的结构,这些Q→D突变体蛋白质的结构没有重大扰动。观察到的稳定性变化必须由以下几个因素的累积效应来解释:(1)主链二面角和侧链旋转异构体的变化,(2)一些原子之间的紧密接触以及,最重要的是,(3)天冬氨酸侧链与主链羰基之间不利的静电相互作用。我们表明,大小相似但呈中性的天冬酰胺(Asn)侧链的去稳定作用较小。免疫球蛋白型结构域β折叠内天冬氨酸的有害作用可能会产生非常严重的后果。β链残基向天冬氨酸的体细胞突变可能会阻止该结构域在体外和体内的表达,或者可能会增加该蛋白质在体内的致病潜力。

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