化学
连接器
结合
立体化学
微管蛋白
组合化学
药品
药理学
微管
数学
计算机科学
医学
生物
细胞生物学
操作系统
数学分析
作者
K. C. Nicolaou,Saiyong Pan,Kiran Kumar Pulukuri,Qiuji Ye,Stephan Rigol,Rohan D. Erande,Dionisios Vourloumis,B. Nocek,Stefan Munneke,Joseph P. Lyssikatos,Amanda Valdiosera,Christine Gu,Baiwei Lin,Hetal Sarvaiaya,Jose Trinidad,Joseph Sandoval,Christina Lee,Mikhail Hammond,Monette Aujay,Nicole Taylor,Marybeth A. Pysz,James W. Purcell,Julia Gavrilyuk
标识
DOI:10.1021/acs.joc.0c02755
摘要
Molecular design, synthesis, and biological evaluation of tubulysin analogues, linker-drugs, and antibody-drug conjugates are described. Among the new discoveries reported is the identification of new potent analogues within the tubulysin family that carry a C11 alkyl ether substituent, rather than the usual ester structural motif at that position, a fact that endows the former with higher plasma stability than that of the latter. Also described herein are X-ray crystallographic analysis studies of two tubulin-tubulysin complexes formed within the α/β interface between two tubulin heterodimers and two highly potent tubulysin analogues, one of which exhibited a different binding mode to the one previously reported for tubulysin M. The X-ray crystallographic analysis-derived new insights into the binding modes of these tubulysin analogues explain their potencies and provide inspiration for further design, synthesis, and biological investigations within this class of antitumor agents. A number of these analogues were conjugated as payloads with appropriate linkers at different sites allowing their attachment onto targeting antibodies for cancer therapies. A number of such antibody-drug conjugates were constructed and tested, both in vivo and in vitro, leading to the identification of at least one promising ADC (Herceptin-LD3), warranting further investigations.
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