Structural Insights into Steroid Hormone Binding

J. Valjakka, Kristiina Takkinenz, T. Teerinen, H. Söderlund, J. Rouvinen
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引用次数: 17

Abstract

The monoclonal anti-testosterone antibody (3-C4F5) has a relatively high affinity (3 × 108 m −1) with an overall good specificity profile. However, the earlier characterized binding properties have shown that both the affinity and specificity of this antibody must be improved if it is intended for use in clinical immunoassays. In this paper, the crystal structures of the recombinant anti-testosterone (3-C4F5) Fab fragment have been determined in the testosterone-bound and free form at resolutions of 2.60 and 2.72 Å, respectively. The high affinity binding of the (3-C4F5) Fab is mainly determined by shape complementarity between the protein and testosterone. Only one direct hydrogen bond is formed between the hydroxyl group of the testosterone D-ring and the main-chain oxygen of Gly100JH. The testosterone is deeply bound in a hydrophobic pocket, and the close shape complementarity is mainly formed by the third complementarity-determining regions (CDR) of the heavy and light chain. Comparison of the bound structure with the free structure indicates conformational changes in the protein upon testosterone binding. The conformational changes of the side chains of two residues Glu95H and Tyr99H in the CDR-H3 are particularly essential for the binding. Interesting similarities in the binding of different steroids were also observed upon comparison of the available structures of anti-steroid antibodies.
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类固醇激素结合的结构洞察
单克隆抗睾酮抗体(3- c4f5)具有较高的亲和力(3 × 108 m−1),具有良好的特异性。然而,早期表征的结合特性表明,如果该抗体打算用于临床免疫测定,则必须提高其亲和力和特异性。本文测定了重组抗睾酮(3-C4F5) Fab片段在睾酮结合和游离形式下的晶体结构,分辨率分别为2.60和2.72 Å。(3-C4F5) Fab的高亲和力结合主要是由蛋白与睾酮之间的形状互补决定的。睾酮d环的羟基与Gly100JH的主链氧之间仅形成一个直接氢键。睾酮被深深束缚在疏水口袋中,紧密形状互补主要由重链和轻链的第三互补决定区(CDR)形成。结合结构与自由结构的比较表明睾酮结合后蛋白质的构象发生了变化。CDR-H3中两个残基Glu95H和Tyr99H侧链的构象变化对结合尤为重要。通过比较抗类固醇抗体的可用结构,还观察到不同类固醇结合的有趣相似性。
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