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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Role of conserved residues in structure and stability: tryptophans of human serum retinol-binding protein, a model for the lipocalin superfamily.
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Role of conserved residues in structure and stability: tryptophans of human serum retinol-binding protein, a model for the lipocalin superfamily.

机译:保守残基在结构和稳定性中的作用:人血清视黄醇结合蛋白的色氨酸,一种脂质运载蛋白超家族的模型。

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摘要

Serum retinol binding protein (RBP) is a member of the lipocalin family, proteins with up-and-down beta-barrel folds, low levels of sequence identity, and diverse functions. Although tryptophan 24 of RBP is highly conserved among lipocalins, it does not play a direct role in activity. To determine if Trp24 and other conserved residues have roles in stability and/or folding, we investigated the effects of conservative substitutions for the four tryptophans and some adjacent residues on the structure, stability, and spectroscopic properties of apo-RBP. Crystal structures of recombinant human apo-RBP and of a mutant with substitutions for tryptophans 67 and 91 at 1.7 A and 2.0 A resolution, respectively, as well as stability measurements, indicate that these relatively exposed tryptophans have little influence on structure or stability. Although Trp105 is largely buried in the wall of the beta-barrel, it can be replaced with minor effects on stability to thermal and chemical unfolding. In contrast, substitutions of three different amino acids for Trp24 or replacement of Arg139, a conserved residue that interacts with Trp24, lead to similar large losses in stability and lower yields of native protein generated by in vitro folding. The results and the coordinated nature of natural substitutions at these sites support the idea that conserved residues in functionally divergent homologs have roles in stabilizing the native relative to misfolded structures. They also establish conditions for studies of the kinetics of folding and unfolding by identifying spectroscopic signals for monitoring the formation of different substructures.
机译:血清视黄醇结合蛋白(RBP)是lipocalin家族的成员,该蛋白具有上下桶形折叠,低水平的序列同一性和多种功能。尽管RBP的色氨酸24在脂蛋白中是高度保守的,但它在活性中没有直接作用。为了确定Trp24和其他保守残基是否在稳定性和/或折叠中起作用,我们研究了四个色氨酸和一些相邻残基的保守取代对载脂蛋白RBP的结构,稳定性和光谱性质的影响。重组人apo-RBP的晶体结构以及分别以1.7 A和2.0 A分辨率取代色氨酸67和91的突变体的晶体结构以及稳定性测量表明,这些相对暴露的色氨酸对结构或稳定性几乎没有影响。尽管Trp105大部分埋在β-桶的壁中,但可以替换它,而对热和化学展开的稳定性影响很小。相反,用三种不同的氨基酸替代Trp24或替代Arg139(与Trp24相互作用的保守残基),会导致稳定性类似的大损失,并降低体外折叠产生的天然蛋白的产量。这些位点的结果和自然置换的协调性质支持以下观点:功能不同的同源物中的保守残基相对于错折叠的结构具有稳定天然的作用。他们还通过识别用于监测不同亚结构形成的光谱信号,为研究折叠和展开动力学建立了条件。

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