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Identification of allosteric inhibitors of the ecto-5'-nucleotidase (CD73) targeting the dimer interface

机译:鉴定二聚界面的EcTO-5'-核苷酸酶(CD73)的构振抑制剂

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摘要

The ecto-5'-nucleotidase CD73 plays an important role in the production of immune-suppressive adenosine in tumor micro-environment, and has become a validated drug target in oncology. Indeed, the anticancer immune response involves extracellular ATP to block cell proliferation through T-cell activation. However, in the tumor micro-environment, two extracellular membrane-bound enzymes (CD39 and CD73) are overexpressed and hydrolyze efficiently ATP into AMP then further into immune-suppressive adenosine. To circumvent the impact of CD73-generated adenosine, we applied an original bioinformatics approach to identify new allosteric inhibitors targeting the dimerization interface of CD73, which should impair the large dynamic motions required for its enzymatic function. Several hit compounds issued from virtual screening campaigns showed a potent inhibition of recombinant CD73 with inhibition constants in the low micromolar range and exhibited a non-competitive inhibition mode. The structure-activity relationships studies indicated that several amino acid residues (D366, H456, K471, Y484 and E543 for polar interactions and G453-454, I455, H456, L475, V542 and G544 for hydrophobic contacts) located at the dimerization interface are involved in the tight binding of hit compounds and likely contributed for their inhibitory activity. Overall, the gathered information will guide the upcoming lead optimization phase that may lead to potent and selective CD73 inhibitors, able to restore the anticancer immune response.
机译:EctO-5'-核苷酸CD73在肿瘤微环境中的免疫抑制腺苷的生产中起重要作用,并且已成为肿瘤学中的验证药物靶标。实际上,抗癌免疫应答涉及通过T细胞活化来阻断细胞外ATP。然而,在肿瘤微环境中,两种细胞外膜结合酶(CD39和CD73)过表达,然后将AMP有效地水解成AMP,然后进一步进入免疫抑制腺苷。为了避免CD73-生成的腺苷的影响,我们应用了原始的生物信息学方法来鉴定靶向CD73二聚化界面的新的颠覆抑制剂,这应该损害其酶促功能所需的大动态运动。从虚拟筛选活动发出的几种击中化合物显示出具有低微摩尔范围内的抑制常数的重组CD73的有效抑制,并且表现出不竞争的抑制模式。结构 - 活性关系研究表明,涉及位于二聚化界面的几种氨基酸残基(D366,H456,K471,Y484和E543,疏水触点的G453-454,I455,H456,L475,V542和G544)在麦芽化合物的紧密结合中,可能为其抑制活性有贡献。总体而言,收集的信息将指导即将到来的铅优化阶段,可能导致有效和选择性CD73抑制剂,能够恢复抗癌免疫应答。

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