再生(生物学)
平方毫米
蛋白酶体
计算生物学
机制(生物学)
泛素
生物信息学
细胞生物学
癌症研究
医学
化学
生物
基因
生物化学
哲学
认识论
作者
Seongkeun Jeong,Jae‐Kook Cha,Wasim Ahmed,Jung-Taek Kim,Minsup Kim,Kyung Tae Hong,Won-Seok Choi,Sunjoo Choi,Tae Hyeon Yoo,Hyun‐Ju An,Susun An,Jae Min Lee,Ji‐Min Choi,Sun‐Young Kim,Jun‐Seok Lee,Soonchul Lee,Junwon Choi,Jin Man Kim
标识
DOI:10.1002/advs.202415626
摘要
Proteolysis-targeting chimeras (PROTACs) degrade target proteins through the ubiquitin-proteasome system. To date, PROTACs are primarily used to treat various diseases; however, they have not been applied in regenerative therapy. Herein, this work introduces MDM2-targeting PROTACs customized for application in bone regeneration. An MDM2-PROTAC library is constructed by combining Nutlin-3 and CRBN ligands with various linker designs. Through a multistep validation process, this work develops MDM2-PROTACs (CL144 and CL174) that presented potent degradation efficiency and a robust inductive effect on the biomineralization. Next, this work performs whole-transcriptome analysis to dissect the biological effects of the CL144, and reveals the upregulation of osteogenic marker genes. Furthermore, CL144 effectively induced bone regeneration in bone graft and ovariectomy (OVX) models after local and systemic administration, respectively. In the OVX model, the combination treatment with CL144 and alendronate induced a synergistic effect. Overall, this study demonstrates the promising role of MDM2-PROTAC in promoting bone regeneration, marking the first step toward expanding the application of the PROTAC technology.
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