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氨甲基吗啉代核苷作为PARP1和PARP2的新型抑制剂:其选择性及作用机制的实验与分子模拟分析

Aminomethylmorpholino Nucleosides as Novel Inhibitors of PARP1 and PARP2: Experimental and Molecular Modeling Analyses of Their Selectivity and Mechanism of Action.

作者信息

Chernyshova Irina, Vasil'eva Inna, Moor Nina, Ivanisenko Nikita, Kutuzov Mikhail, Abramova Tatyana, Zakharenko Alexandra, Lavrik Olga

机构信息

Institute of Chemical Biology and Fundamental Medicine, Siberian Branch of the Russian Academy of Sciences, 630090 Novosibirsk, Russia.

Federal Research Centre Institute of Cytology and Genetics, Siberian Branch of the Russian Academy of Sciences, 630090 Novosibirsk, Russia.

出版信息

Int J Mol Sci. 2024 Nov 22;25(23):12526. doi: 10.3390/ijms252312526.

Abstract

Poly(ADP-ribose) polymerases 1 and 2 (PARP1 and PARP2) play a key role in DNA repair. As major sensors of DNA damage, they are activated to produce poly(ADP-ribose). PARP1/PARP2 inhibitors have emerged as effective drugs for the treatment of cancers with BRCA deficiencies. Here, we explored aminomethylmorpholino and aminomethylmorpholino glycine nucleosides as inhibitors of PARP1 and PARP2, using different enzymatic assays. The compounds bearing thymine or 5-Br(I)-uracil bases displayed the highest inhibition potency, with all of them being more selective toward PARP1. Interaction of the inhibitors with the NAD binding cavity of PARP1 (PARP2) suggested by the mixed-type inhibition was demonstrated by molecular docking and the RoseTTAFold All-Atom AI-model. The best PARP1 inhibitors characterized by the inhibition constants in the range of 12-15 µM potentiate the cytotoxicity of hydrogen peroxide by displaying strong synergism. The inhibitors revealed no impact on PARP1/PARP2 affinity for DNA, while they reduced the dissociation rate of the enzyme-DNA complex upon the autopoly(ADP-ribosyl)ation reaction, thus providing evidence that their mechanism of action for PARP trapping is due primarily to catalytic inhibition. The most active compounds were shown to retain selectivity toward PARP1, despite the reduced inhibition potency in the presence of histone PARylation factor 1 (HPF1) capable of regulating PARP1/PARP2 catalytic activity and ADP-ribosylation reaction specificity. The inhibitors obtained seem to be promising for further research as potential drugs.

摘要

聚(ADP - 核糖)聚合酶1和2(PARP1和PARP2)在DNA修复中起关键作用。作为DNA损伤的主要感受器,它们被激活以产生聚(ADP - 核糖)。PARP1/PARP2抑制剂已成为治疗具有BRCA缺陷癌症的有效药物。在此,我们使用不同的酶促测定法,探索了氨甲基吗啉和氨甲基吗啉甘氨酸核苷作为PARP1和PARP2的抑制剂。带有胸腺嘧啶或5 - Br(I) - 尿嘧啶碱基的化合物显示出最高的抑制效力,所有这些化合物对PARP1的选择性更高。分子对接和RoseTTAFold全原子人工智能模型证明了由混合型抑制所表明的抑制剂与PARP1(PARP2)的NAD结合腔的相互作用。以12 - 15μM范围内的抑制常数为特征的最佳PARP1抑制剂通过显示出强烈的协同作用增强了过氧化氢的细胞毒性。这些抑制剂对PARP1/PARP2与DNA的亲和力没有影响,而它们在自聚(ADP - 核糖基)化反应后降低了酶 - DNA复合物的解离速率,从而提供了证据表明它们的PARP捕获作用机制主要是由于催化抑制。尽管在能够调节PARP1/PARP2催化活性和ADP - 核糖基化反应特异性的组蛋白PARylation因子1(HPF1)存在下抑制效力降低,但最具活性的化合物对PARP1仍保持选择性。所获得的抑制剂作为潜在药物似乎有希望进行进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eada/11640836/9c8e6c173708/ijms-25-12526-sch001.jpg

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