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Molecular architecture and inhibition mechanism of human ATR-ATRIP
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作者 Guangxian Wang Po Wang +7 位作者 Zexuan Zheng Qingjun Zhang Chenchen Xu Xinyi Xu Lingfei Jian Zhanpeng Zhao Gang Cai Xuejuan Wang 《Science Bulletin》 2025年第13期2137-2146,共10页
The ataxia telangiectasia–mutated and Rad3-related(ATR)kinase is a master regulator of DNA damage response and replication stress in humans.Targeting ATR is the focus of oncology drug pipelines with a number of poten... The ataxia telangiectasia–mutated and Rad3-related(ATR)kinase is a master regulator of DNA damage response and replication stress in humans.Targeting ATR is the focus of oncology drug pipelines with a number of potent,selective ATR inhibitors currently in clinical development.Here,we determined the cryo-EM structures of the human ATR-ATRIP complex in the presence of VE-822 and RP-3500,two ATR inhibitors currently in Phase II clinical trials,achieving an overall resolution of approximately 3Å.These structures yield a near-complete atomic model of the ATR-ATRIP complex,revealing subunit stoichiometry,intramolecular and intermolecular interactions,and critical regulatory sites including an insertion in the PIKK regulatory domain(PRD).Structural comparison provides insights into the modes of action and selectivity of ATR inhibitors.The divergent binding modes near the solvent side and in the rear pocket area of VE-822 and RP-3500,particularly their disparate binding orientations,lead to varying conformational changes in the active site.Surprisingly,one ATR-ATRIP complex binds four VE-822 molecules,with two in the ATR active site and two at the ATR-ATR dimer interface.The binding and selectivity of RP-3500 depend on two bound water molecules,which may be further enhanced by the substitution of these bound waters.Our study provides a structural framework for understanding ATR regulation and holds promise for assisting future efforts in rational drug design targeting ATR. 展开更多
关键词 atr-atrip complex Replication stress Cancer therapy CRYO-EM ATR inhibitors VE-822 RP-3500 Small molecules
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TopBP1和ATR-ATRIP在细胞周期中的作用及联系
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作者 黄神安 熊高飞 张吉翔 《医学分子生物学杂志》 CAS CSCD 2006年第5期364-367,共4页
TopBP1(topoisomeraseⅡbeta-bindingprotein1)和ATR(ataxia-telangiectasiamutated-andrad3-re-lated)-ATRIP(ATR-interactingprotein)通过调节一些因子在DNA损伤检控点(DNAdamagecheckpoint)中起着关键的作用,其中TopBP1可以激活ATR-A... TopBP1(topoisomeraseⅡbeta-bindingprotein1)和ATR(ataxia-telangiectasiamutated-andrad3-re-lated)-ATRIP(ATR-interactingprotein)通过调节一些因子在DNA损伤检控点(DNAdamagecheckpoint)中起着关键的作用,其中TopBP1可以激活ATR-ATRIP的复合体。文章着重阐述了TopBP1和ATR-ATRIP如何调控细胞周期并发挥其维护基因组完整性的作用。 展开更多
关键词 TopBP1 atr-atrip DNA损伤检控点
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