Berney Mark, Doherty William, Jauslin Werner Theodor, T Manoj Manav, Dürr Eva-Maria, McGouran Joanna Francelle
School of Chemistry & Trinity Biomedical Sciences Institute, Trinity College Dublin, The University of Dublin, Ireland.
School of Chemistry & Trinity Biomedical Sciences Institute, Trinity College Dublin, The University of Dublin, Ireland.
Bioorg Med Chem. 2021 Sep 15;46:116369. doi: 10.1016/j.bmc.2021.116369. Epub 2021 Aug 25.
SNM1A is a zinc-dependent nuclease involved in the removal of interstrand crosslink lesions from DNA. Inhibition of interstrand crosslink repair enzymes such as SNM1A is a promising strategy for improving the efficacy of crosslinking chemotherapy drugs. Initial studies have demonstrated the feasibility of developing SNM1A inhibitors, but the full potential of this enzyme as a drug target has yet to be explored. Herein, the synthesis of a family of squaramide- and thiosquaramide-bearing nucleoside derivatives and their evaluation as SNM1A inhibitors is reported. A gel electrophoresis assay was used to identify nucleoside derivatives bearing an N-hydroxysquaramide or squaric acid moiety at the 3'-position, and a thymidine derivative bearing a 5'-thiosquaramide, as candidate SNM1A inhibitors. Quantitative IC determination showed that a thymidine derivative bearing a 5'-thiosquaramide was the most potent inhibitor, followed by a thymidine derivative bearing a 3'-squaric acid. UV-Vis titrations were carried out to evaluate the binding of the (thio)squaramides to zinc ions, allowing the order of inhibitory potency to be rationalised. The membrane permeability of the active inhibitors was investigated, with several compounds showing promise for future in vivo applications.
SNM1A是一种锌依赖性核酸酶,参与去除DNA中的链间交联损伤。抑制诸如SNM1A等链间交联修复酶是提高交联化疗药物疗效的一种有前景的策略。初步研究已证明开发SNM1A抑制剂的可行性,但该酶作为药物靶点的全部潜力尚未得到探索。在此,报道了一系列含方酰胺和硫代方酰胺的核苷衍生物的合成及其作为SNM1A抑制剂的评价。采用凝胶电泳分析来鉴定在3'-位带有N-羟基方酰胺或方酸部分的核苷衍生物,以及带有5'-硫代方酰胺的胸苷衍生物作为候选SNM1A抑制剂。定量IC测定表明,带有5'-硫代方酰胺的胸苷衍生物是最有效的抑制剂,其次是带有3'-方酸的胸苷衍生物。进行紫外可见滴定以评估(硫代)方酰胺与锌离子的结合,从而使抑制效力的顺序合理化。研究了活性抑制剂的膜通透性,几种化合物显示出未来体内应用的前景。