| Literature DB >> 19317452 |
Hwei-Ru Tsou1, Xiaoxiang Liu, Gary Birnberg, Joshua Kaplan, Mercy Otteng, Tritin Tran, Kristina Kutterer, Zhilian Tang, Ron Suayan, Arie Zask, Malini Ravi, Angela Bretz, Mary Grillo, John P McGinnis, Sridhar K Rabindran, Semiramis Ayral-Kaloustian, Tarek S Mansour.
Abstract
The series of 4-(benzylaminomethylene)isoquinoline-1,3-(2H,4H)-dione and 4-[(pyridylmethyl)aminomethylene]isoquinoline-1,3-(2H,4H)-dione derivatives reported here represents a novel class of potential antitumor agents, which potently and selectively inhibit CDK4 over CDK2 and CDK1. In the benzylamino headpiece, a 3-OH substituent is required on the phenyl ring for CDK4 inhibitory activity, which is further enhanced when an iodo, aryl, heteroaryl, t-butyl, or cyclopentyl substituent is introduced at the C-6 position of the isoquinoline-1,3-dione core. To circumvent the metabolic liability associated with the phenolic OH group on the 4-substituted 3-OH phenyl headpiece, we take two approaches: first, introduce a nitrogen o- or p- to the 3-OH group in the phenyl ring; second, replace the phenyl headpiece with N-substituted 2-pyridones. We present here the synthesis, SAR data, metabolic stability data, and a CDK4 mimic model that explains the binding, potency, and selectivity of our CDK4 selective inhibitors.Entities:
Mesh:
Substances:
Year: 2009 PMID: 19317452 DOI: 10.1021/jm801026e
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446