ULTRA-POTENT VINA ALKALOIDS: ADDED MOLECULAR COMPLEXITY FURTHER DISRUPTS THE TUBLIN DIMER-DIMER INTERFACE

Number of patents in Portfolio can not be more than 2000

United States of America Patent

APP PUB NO 20200317696A1
SERIAL NO

16305357

Stats

ATTORNEY / AGENT: (SPONSORED)

Importance

Loading Importance Indicators... loading....

Abstract

See full text

Synthetically-derived and previously inaccessible modifications of 20′-hydroxy-vinca derivative compounds such as vinblastine, vincristine or vindesine are disclosed that are a stunning 100-fold more active than the natural product (IC50's 50-75 pM vs 7 nM, HCT116), and are now accessible as a result of advances in the total synthesis of the natural product. Illustrative new ultra-potent vinblastines bind tubulin with much higher affinity and likely further disrupt the tubulin head-to-tail α/β dimer-dimer interaction by virtue of the strategic placement of an added conformationally well-defined, rigid and extended C20′-urea along the adjacent protein-protein interface. Added molecular complexity was used to markedly enhance target binding and functional biological activity, and represents a general approach to improving the properties of other natural products targeting a protein-protein interaction. A pharmaceutical composition containing an ultra-potent 20′-hydroxy-vinca derivative compound and a method of treating cancerous cells with such a compound are also disclosed.

Loading the Abstract Image... loading....

First Claim

See full text

Family

Loading Family data... loading....

Patent Owner(s)

Patent OwnerAddress
THE SCRIPPS RESEARCH INSTITUTE10550 N TORREY PINES RD TPC-8 LA JOLLA CA 92037

International Classification(s)

Inventor(s)

Inventor Name Address # of filed Patents Total Citations
Boger, Dale LaJolla, US 9 41

Cited Art Landscape

Load Citation

Patent Citation Ranking

Forward Cite Landscape

Load Citation