Title : Discovery of ML323 as a Novel Inhibitor of the USP1/UAF1 Deubiquitinase Complex

Pub. Date : 2010

PMID : 25506968






8 Functional Relationships(s)
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1 Discovery of ML323 as a Novel Inhibitor of the USP1/UAF1 Deubiquitinase Complex Advances in pharmacological approaches to target the ubiquitin-proteasome system have revealed several potential new molecular targets within the ubiquitin machinery. ML323 ubiquitin specific peptidase 1 Homo sapiens
2 Discovery of ML323 as a Novel Inhibitor of the USP1/UAF1 Deubiquitinase Complex Advances in pharmacological approaches to target the ubiquitin-proteasome system have revealed several potential new molecular targets within the ubiquitin machinery. ML323 WD repeat domain 48 Homo sapiens
3 Herein, we describe the discovery and optimization of ML323, a probe molecule that displays reversible, nanomolar inhibitory activity and excellent selectivity toward USP1/UAF1. ML323 ubiquitin specific peptidase 1 Homo sapiens
4 Herein, we describe the discovery and optimization of ML323, a probe molecule that displays reversible, nanomolar inhibitory activity and excellent selectivity toward USP1/UAF1. ML323 WD repeat domain 48 Homo sapiens
5 In addition, ML323 potentiates the cytotoxicity of cisplatin and increases endogenous monoubiquitination levels of both PCNA and FANCD2, two known cellular targets of USP1/UAF1 [8]. ML323 proliferating cell nuclear antigen Homo sapiens
6 In addition, ML323 potentiates the cytotoxicity of cisplatin and increases endogenous monoubiquitination levels of both PCNA and FANCD2, two known cellular targets of USP1/UAF1 [8]. ML323 FA complementation group D2 Homo sapiens
7 In addition, ML323 potentiates the cytotoxicity of cisplatin and increases endogenous monoubiquitination levels of both PCNA and FANCD2, two known cellular targets of USP1/UAF1 [8]. ML323 ubiquitin specific peptidase 1 Homo sapiens
8 In addition, ML323 potentiates the cytotoxicity of cisplatin and increases endogenous monoubiquitination levels of both PCNA and FANCD2, two known cellular targets of USP1/UAF1 [8]. ML323 WD repeat domain 48 Homo sapiens