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首页> 外文期刊>Journal of Molecular Biology >A Highly Diverse and Functional Naive Ubiquitin Variant Library for Generation of Intracellular Affinity Reagents
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A Highly Diverse and Functional Naive Ubiquitin Variant Library for Generation of Intracellular Affinity Reagents

机译:一种高度多样化和功能性的野生泛素变异库,用于产生细胞内亲和试剂

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We report the design, construction, and validation of a highly diverse phage-displayed naive ubiquitin variant (Ubv) library. We first conducted a mutation tolerance scan of 27 residues and confirmed that 24 of these could be substituted by chemically diverse amino acids without compromising the display of Ubvs on phage. Subsequently, we constructed a library containing 6.8 x 10(10) unique members, in which these 24 positions were diversified with a degenerate codon that encodes for 6 as that are prevalent in protein interaction sites. To ensure the optimal structural stability of the Ubvs, we constructed the library in a two-step process, whereby 12 positions were randomized first, and following the selection for displayed Ubvs, the resulting pool was further diversified at the other 12 positions. The resulting library was validated by conducting binding selections against a panel of 40 diverse protein antigens and was found to be as functional as a highly validated synthetic antibody library, yielding binders against 30 of the antigens. Detailed characterization of an Ubv that bound to the cell-surface receptor human epidermal growth factor receptor 3 revealed tight binding in the single-digit nanomolar range. Moreover, Ubvs that bound to two distinct sites on the intracellular adapter Grb2 could be combined to generate a potent inhibitor that functioned in cells. These results validate ubiquitin as a robust scaffold for the construction of naive libraries that can be used to generate Ubvs that target signaling networks both outside and inside the cells. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们报告了高度多样化的噬菌体展示的野生泛素变体(UBV)库的设计,构造和验证。我们首先进行了27个残基的突变耐受扫描,并确认其中24个可以被化学多样化的氨基酸代替,而不会损害噬菌体上的UBVs的显示。随后,我们构建了一个包含6.8×10(10)个独特成员的文库,其中这些24个位置与编码6的简并密码子多样化,因为在蛋白质相互作用位点普遍存在6中。为了确保UBV的最佳结构稳定性,我们在两步过程中构建了库,从而首先随机化12个位置,并且在显示UBV的选择之后,在另一个12个位置进一步多样化所得池。通过对40个不同蛋白质抗原的面板进行结合选择来验证所得文库,并被发现与高度验证的合成抗体库一样具有功能性,得到30次抗原的粘合剂。详细表征与细胞表面受体人表皮生长因子受体3结合的UBV揭示了在单位数纳米摩尔范围内的紧密结合。此外,可以组合与细胞内适配器GRB2上的两个不同位点结合的UBV,以产生在细胞中起作用的有效抑制剂。这些结果验证了泛素作为稳健的脚手架,用于构建天真的库,该丘比亚可以用于生成在单元外部和内部的目标信令网络的UBV。 (c)2016 Elsevier有限公司保留所有权利。

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