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以T4溶菌酶中的插入和缺失突变体为例的蛋白质结构可塑性。

Protein structural plasticity exemplified by insertion and deletion mutants in T4 lysozyme.

作者信息

Vetter I R, Baase W A, Heinz D W, Xiong J P, Snow S, Matthews B W

机构信息

Institute of Molecular Biology, Howard Hughes Medical Institute, University of Oregon, Eugene 97403, USA.

出版信息

Protein Sci. 1996 Dec;5(12):2399-415. doi: 10.1002/pro.5560051203.

Abstract

To further investigate the ways in which proteins respond to changes in the length of the polypeptide chain, a series of 32 insertions and five deletions were made within nine different alpha-helices of T4 lysozyme. In most cases, the inserted amino acid was a single alanine, although in some instances up to four residues, not necessarily alanine, were used. Different insertions destabilized the protein by different amounts, ranging from approximately 1 to 6 kcal/mol. In one case, no protein could be obtained. An "extension" mutant in which the carboxy terminus of the molecule was extended by four alanines increased stability by 0.3 kcal/mol. For the deletions, the loss in stability ranged from approximately 3 to 5 kcal/mol. The structures of six insertion mutants, as well as one deletion mutant and the extension mutant, were determined, three in crystal forms nonisomorphous with wild type. In all cases, including previously described insertion mutants within a single alpha-helix, there appears to be a strong tendency to preserve the helix by translocating residues so that the effects of the insertion are propagated into a bend or loop at one end or the other of the helix. In three mutants, even the hydrophobic core was disrupted so as to permit the preservation of the alpha-helix containing the insertion. Translocation (or "register shift") was also observed for the deletion mutant, in this case a loop at the end of the helix being shortened. In general, when translocation occurs, the reduction in stability is only moderate, averaging 2.5 kcal/mol. Only in the most extreme cases does "bulging" or "looping-out" occur within the body of an alpha-helix, in which case the destabilization is substantial, averaging 4.9 kcal/mol. Looping-out can occur for insertions close to the end of a helix, in which case the destabilization is less severe, averaging 2.6 kcal/mol. Mutant A73-[AAA] as well as mutants R119-[A] and V131-[A], include shifts in the backbone of 3-6 A, extending over 20 residues or more. As a result, residues 114-142, which form a "cap" on the carboxy-terminal domain, undergo substantial reorganizations such that the interface between this "cap" and the rest of the protein is altered substantially. In the case of mutant A73-[AAA], two nearby alpha-helices, which form a bend of approximately 105 degrees in the wild-type structure, reorganize in the mutant structure to form a single, essentially straight helix. These structural responses to mutation demonstrate the plasticity of protein structures and illustrate ways in which their three-dimensional structures might changes during evolution.

摘要

为了进一步研究蛋白质对多肽链长度变化的响应方式,在T4溶菌酶的九个不同α螺旋内进行了一系列32次插入和五次缺失。在大多数情况下,插入的氨基酸是单个丙氨酸,不过在某些情况下会使用多达四个残基,不一定是丙氨酸。不同的插入使蛋白质不稳定的程度不同,范围约为1至6千卡/摩尔。在一种情况下,无法获得蛋白质。一个“延伸”突变体,其分子的羧基末端延伸了四个丙氨酸,稳定性提高了0.3千卡/摩尔。对于缺失突变体,稳定性损失范围约为3至5千卡/摩尔。测定了六个插入突变体、一个缺失突变体和延伸突变体的结构,其中三个是与野生型晶体形式不同晶型的。在所有情况下,包括先前描述的单个α螺旋内的插入突变体,似乎都有通过残基移位来保留螺旋的强烈趋势,以便插入的影响传播到螺旋一端或另一端的弯曲或环中。在三个突变体中,甚至疏水核心也被破坏,以允许保留包含插入的α螺旋。在缺失突变体中也观察到了移位(或“配准移位”),在这种情况下,螺旋末端的一个环被缩短。一般来说,当发生移位时,稳定性的降低只是中等程度,平均为2.5千卡/摩尔。只有在最极端的情况下,α螺旋内部才会出现“鼓出”或“环出”,在这种情况下,不稳定程度很大,平均为4.9千卡/摩尔。靠近螺旋末端的插入可能会出现环出,在这种情况下,不稳定程度较轻,平均为2.6千卡/摩尔。突变体A73-[AAA]以及突变体R119-[A]和V131-[A],主链移位3 - 6埃,延伸超过20个残基或更多。结果,在羧基末端结构域上形成“帽”的114 - 142残基经历了大量重组,使得这个“帽”与蛋白质其余部分之间的界面发生了显著改变。在突变体A73-[AAA]的情况下,在野生型结构中形成约105度弯曲的两个相邻α螺旋,在突变体结构中重新组织形成一个基本笔直的单螺旋。这些对突变的结构响应证明了蛋白质结构的可塑性,并说明了它们的三维结构在进化过程中可能发生变化的方式。

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