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剪接体 RNA 解旋酶 BRR2 中构象依赖性配体热点。

Conformation-dependent ligand hot spots in the spliceosomal RNA helicase BRR2.

机构信息

Laboratory of Structural Biochemistry, Institute of Chemistry and Biochemistry, Freie Universität Berlin, Takustrasse 6, 14195 Berlin, Germany.

Drug Design Group, Institute of Pharmaceutical Chemistry, Philipps-Universität Marburg, Marbacher Weg 6, 35032 Marburg, Germany.

出版信息

Acta Crystallogr D Struct Biol. 2023 Apr 1;79(Pt 4):304-317. doi: 10.1107/S2059798323001778. Epub 2023 Apr 28.

Abstract

The conversion of hits to leads in drug discovery involves the elaboration of chemical core structures to increase their potency. In fragment-based drug discovery, low-molecular-weight compounds are tested for protein binding and are subsequently modified, with the tacit assumption that the binding mode of the original hit will be conserved among the derivatives. However, deviations from binding mode conservation are rather frequently observed, but potential causes of these alterations remain incompletely understood. Here, two crystal forms of the spliceosomal RNA helicase BRR2 were employed as a test case to explore the consequences of conformational changes in the target protein on the binding behaviour of fragment derivatives. The initial fragment, sulfaguanidine, bound at the interface between the two helicase cassettes of BRR2 in one crystal form. Second-generation compounds devised by structure-guided docking were probed for their binding to BRR2 in a second crystal form, in which the original fragment-binding site was altered due to a conformational change. While some of the second-generation compounds retained binding to parts of the original site, others changed to different binding pockets of the protein. A structural bioinformatics analysis revealed that the fragment-binding sites correspond to predicted binding hot spots, which strongly depend on the protein conformation. This case study offers an example of extensive binding-mode changes during hit derivatization, which are likely to occur as a consequence of multiple binding hot spots, some of which are sensitive to the flexibility of the protein.

摘要

在药物发现中,从命中物到先导化合物的转化涉及到对化学核心结构的精心设计,以提高其效力。在基于片段的药物发现中,低分子量化合物会被测试其与蛋白质的结合能力,然后对其进行修饰,这隐含的假设是原始命中物的结合模式在衍生物中会保持不变。然而,结合模式的偏离是相当常见的,但这些改变的潜在原因仍不完全清楚。在这里,剪接体 RNA 解旋酶 BRR2 的两种晶体形式被用作测试案例,以探索目标蛋白构象变化对片段衍生物结合行为的影响。最初的片段磺胺胍在 BRR2 的两个解旋酶盒之间的界面处结合。通过结构导向对接设计的第二代化合物被探测其在第二种晶体形式中的结合行为,在这种晶体形式中,由于构象变化,原始片段结合位点发生了改变。虽然第二代的一些化合物仍然与原始结合部位的一部分结合,但另一些化合物则与蛋白质的不同结合口袋结合。结构生物信息学分析表明,片段结合部位对应于预测的结合热点,这些热点强烈依赖于蛋白质的构象。这个案例研究提供了一个在命中物衍生化过程中广泛发生结合模式变化的例子,这可能是由于多个结合热点的存在,其中一些热点对蛋白质的灵活性敏感。

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