首页> 外文期刊>ACS Chemical Biology >Small Molecule Inhibition of the TNF Family Cytokine CD40 Ligand through a Subunit Fracture Mechanism (Retracted article. See vol. 6, pg. 761, 2011)
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Small Molecule Inhibition of the TNF Family Cytokine CD40 Ligand through a Subunit Fracture Mechanism (Retracted article. See vol. 6, pg. 761, 2011)

机译:通过亚基断裂机制的小分子抑制TNF家族细胞因子CD40配体(撤回的文章。请参见第6卷,第761页,2011年)

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摘要

BIO8898 is one of several synthetic organic molecules that have recently been reported to inhibit receptor binding, and function of the constitutively trimeric tumor necrosis factor (TNF) family cytokine CD40 ligand (CD40L, aka CD154). Small molecule inhibitors of protein protein interfaces are relatively rare, and their discovery is often very challenging. Therefore, to understand how 13108898 achieves this feat, we characterized its mechanism of action using biochemical assays and X-ray crystallography. BIO8898 inhibited soluble CD40L binding to CD40-Ig with a potency of IC(50) = 25 mu M and inhibited CD40L-dependent apoptosis in a cellular assay. A co-crystal structure of BIO8898 with CD40L revealed that one inhibitor molecule binds per protein trimer. Surprisingly, the compound binds not at the surface of the protein but by intercalating deeply between two subunits of the homotrimeric cytokine, disrupting a constitutive protein-protein interface and breaking the protein's 3-fold symmetry. The compound forms several hydrogen bonds with the protein, within an otherwise hydrophobic binding pocket In addition to the translational splitting of the trimer, binding of BIO8898 was accompanied by additional local and longer range conformational perturbations of the protein, both in the core and in a surface loop. Binding of BIO8898 is reversible, and the resulting complex is stable and does not lead to detectable dissociation of the protein trimer. Our results suggest that a set of core aromatic residues that are conserved across a subset of TNF family cytokines might represent a generic hot spot for the induced fit binding of trimer-disrupting small molecules
机译:BIO8898是最近被报道抑制受体结合以及组成型三聚体肿瘤坏死因子(TNF)家族细胞因子CD40配体(CD40L,aka CD154)的功能的几种合成有机分子之一。蛋白质界面的小分子抑制剂相对较少,其发现通常非常具有挑战性。因此,为了了解13108898如何实现这一壮举,我们使用生化分析和X射线晶体学来表征其作用机理。 BIO8898抑制可溶性CD40L与CD40-Ig的结合,IC(50)= 25μM,在细胞测定中抑制CD40L依赖性细胞凋亡。 BIO8898与CD40L的共晶体结构表明每个蛋白三聚体均结合一个抑制剂分子。出人意料的是,该化合物不结合在蛋白质表面,而是通过深入插入同型三聚体细胞因子的两个亚基之间,破坏蛋白质的组成性蛋白质界面并破坏蛋白质的3倍对称性。该化合物在疏水结合袋中与蛋白质形成多个氢键。除了三聚体的翻译分裂,BIO8898的结合还伴随着蛋白质在核心和核心中的其他局部和更长范围构象扰动。表面回路。 BIO8898的结合是可逆的,并且生成的复合物是稳定的,不会导致蛋白质三聚体的可检测解离。我们的结果表明,一组在整个TNF家族细胞因子中保守的核心芳香族残基可能代表了诱导三聚体破坏性小分子嵌合结合的通用热点

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