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Structure-based development of potent and selective type-II kinase inhibitors of RIPK1
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作者 Ying Qin Dekang Li +16 位作者 Chunting Qi Huaijiang Xiang Huyan Meng Jingli Liu Shaoqing Zhou Xinyu Gong Ying Li guifang xu Rui Zu Hang Xie Yechun xu Gang xu Zheng Zhang Shi Chen Lifeng Pan Ying Li Li Tan 《Acta Pharmaceutica Sinica B》 SCIE CAS CSCD 2024年第1期319-334,共16页
Receptor-interacting serine/threonine-protein kinase 1(RIPK1)functions as a key regulator in inflammation and cell death and is involved in mediating a variety of inflammatory or degenerative diseases.A number of allo... Receptor-interacting serine/threonine-protein kinase 1(RIPK1)functions as a key regulator in inflammation and cell death and is involved in mediating a variety of inflammatory or degenerative diseases.A number of allosteric RIPK1 inhibitors(RIPK1i)have been developed,and some of them have already advanced into clinical evaluation.Recently,selective RIPK1i that interact with both the allosteric pocket and the ATP-binding site of RIPK1 have started to emerge.Here,we report the rational development of a new series of type-II RIPK1i based on the rediscovery of a reported but mechanistically atypical RIPK3i.We also describe the structure-guided lead optimization of a potent,selective,and orally bioavailable RIPK1i,62,which exhibits extraordinary efficacies in mouse models of acute or chronic inflammatory diseases.Collectively,62 provides a useful tool for evaluating RIPK1 in animal disease models and a promising lead for further drug development. 展开更多
关键词 RIPK1 NECROPTOSIS Type-II kinase inhibitors Rational design Lead optimization Structure‒activity relationship ANTI-INFLAMMATION Preclinical drug discovery
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MiRNA-203 suppresses tumor cell proliferation, migration and invasion by targeting Slug in gastric cancer 被引量:7
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作者 Liuqing Yang Hongwei Liang +11 位作者 Yanbo Wang Shanting Gao Kai Yin Zhijian Liu Xi Zheng Ying Lv Lei Wang Chen-Yu Zhang Xi Chen guifang xu Weijie Zhang Xiaoping Zou 《Protein & Cell》 SCIE CAS CSCD 2016年第5期383-387,共5页
Snail, a family of zinc finger transcription factors, plays an important role in morphogenesis and embryogenesis. Snail zinc finger family 2 (SNAI2 or Slug) has been demonstrated to regulate carcinogenesis of severa... Snail, a family of zinc finger transcription factors, plays an important role in morphogenesis and embryogenesis. Snail zinc finger family 2 (SNAI2 or Slug) has been demonstrated to regulate carcinogenesis of several human cancers including breast, prostate, head, neck, 展开更多
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