首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Strong Enrichment of Aromatic Residues in Binding Sites from a Charge-neutralized Hyperthermostable Sso7d Scaffold Library
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Strong Enrichment of Aromatic Residues in Binding Sites from a Charge-neutralized Hyperthermostable Sso7d Scaffold Library

机译:从电荷中和的超热稳定Sso7d支架库中的结合位点中的芳香残基的丰富。

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摘要

The Sso7d protein from the hyperthermophilic archaeon Sulfolobus solfataricus is an attractive binding scaffold because of its small size (7 kDa), high thermal stability (Tm of 98 °C), and absence of cysteines and glycosylation sites. However, as a DNA-binding protein, Sso7d is highly positively charged, introducing a strong specificity constraint for binding epitopes and leading to nonspecific interaction with mammalian cell membranes. In the present study, we report charge-neutralized variants of Sso7d that maintain high thermal stability. Yeast-displayed libraries that were based on this reduced charge Sso7d (rcSso7d) scaffold yielded binders with low nanomolar affinities against mouse serum albumin and several epitopes on human epidermal growth factor receptor. Importantly, starting from a charge-neutralized scaffold facilitated evolutionary adaptation of binders to differentially charged epitopes on mouse serum albumin and human epidermal growth factor receptor, respectively. Interestingly, the distribution of amino acids in the small and rigid binding surface of enriched rcSso7d-based binders is very different from that generally found in more flexible antibody complementarity-determining region loops but resembles the composition of antibody-binding energetic hot spots. Particularly striking was a strong enrichment of the aromatic residues Trp, Tyr, and Phe in rcSso7d-based binders. This suggests that the rigidity and small size of this scaffold determines the unusual amino acid composition of its binding sites, mimicking the energetic core of antibody paratopes. Despite the high frequency of aromatic residues, these rcSso7d-based binders are highly expressed, thermostable, and monomeric, suggesting that the hyperstability of the starting scaffold and the rigidness of the binding surface confer a high tolerance to mutation.
机译:来自嗜热古细菌Sulfolobus solfataricus的Sso7d蛋白是一种有吸引力的结合支架,因为它的体积小(7 kDa),热稳定性高(Tm为98°C)并且没有半胱氨酸和糖基化位点。但是,作为DNA结合蛋白,Sso7d高度带正电荷,为结合表位引入了强烈的特异性限制,并导致与哺乳动物细胞膜的非特异性相互作用。在本研究中,我们报告了维持高热稳定性的Sso7d电荷中和变体。基于这种减少电荷的Sso7d(rcSso7d)支架的酵母展示文库可产生对小鼠血清白蛋白和人表皮生长因子受体上几个表位具有低纳摩尔亲和力的结合剂。重要的是,从电荷中和的支架开始,分别促进了结合剂向小鼠血清白蛋白和人表皮生长因子受体上带差异电荷的表位的进化适应。有趣的是,氨基酸在富含rcSso7d的粘合剂的小而刚性的结合表面中的分布与通常在更灵活的抗体互补决定区环中发现的氨基酸分布有很大不同,但类似于抗体结合高能热点的组成。尤其引人注目的是基于rcSso7d的粘合剂中芳香族残基Trp,Tyr和Phe的大量富集。这表明该支架的刚性和小尺寸决定了其结合位点的异常氨基酸组成,模仿了抗体对位的能量核心。尽管芳香族残基的频率很高,但这些基于rcSso7d的粘合剂还是高度表达,热稳定和单体的,这表明起始支架的超稳定性和结合表面的刚性赋予了较高的突变耐受性。

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