[EN] SMALL MOLECULE AGONISTS OF MUCOLIPIN 1 AND USES THEREOF<br/>[FR] PETITES MOLÉCULES AGONISTES DE LA MUCOLIPINE 1 ET LEURS UTILISATIONS
申请人:UNIV MICHIGAN REGENTS
公开号:WO2021041866A1
公开(公告)日:2021-03-04
This invention is in the field of medicinal chemistry. In particular, the invention relates to a new class of small-molecules having a phenyl-sulfonic amide (or similar) structure which function as agonists of mucolipin 1 (ML1), and their use as therapeutics for the treatment of Duchenne muscular dystrophy (DMD) and related disorders.
Discovery of Selective Inhibitors of Endoplasmic Reticulum Aminopeptidase 1
作者:Zachary Maben、Richa Arya、Digamber Rane、W. Frank An、Shailesh Metkar、Marc Hickey、Samantha Bender、Akbar Ali、Tina T. Nguyen、Irini Evnouchidou、Roger Schilling、Efstratios Stratikos、Jennifer Golden、Lawrence J. Stern
DOI:10.1021/acs.jmedchem.9b00293
日期:2020.1.9
clohexyl)-3-(p-tolyl)urea) are competitive inhibitors of ERAP1 aminopeptidase activity. Compound 3 (4-methoxy-3-(N-(2-(piperidin-1-yl)-5-(trifluoromethyl)phenyl)sulfamoyl)benzoic acid) allosterically activates ERAP1's hydrolysis of fluorogenic and chromogenic amino acid substrates but competitively inhibits its activity toward a nonamer peptide representative of physiological substrates. Compounds
Method for controlling sr protein phosphorylation, and antiviral agents whose active ingredients comprise agents that control sr protein activity
申请人:Hagiwara Masatoshi
公开号:US20070135367A1
公开(公告)日:2007-06-14
The present invention provides: (1) antiviral agents that act by reducing or inhibiting the activity of SR proteins, more specifically, (i) antiviral agents that act by enhancing dephosphorylation of SR proteins, and (ii) antiviral agents that act by inhibiting proteins that phosphorylate SR proteins; (2) antiviral agents that act by inhibiting the expression of SR proteins, and (3) antiviral agents that act by activating proteins that antagonize SR proteins. The present invention also provides compounds that inhibit SRPKs, which phosphorylate SR proteins. Such compounds inhibit the activity of SR proteins and have antiviral activities. Various new viruses including SARS have emerged, and thus the present invention provides long-lasting broad-spectrum antiviral agents applicable to new viruses.
METHODS FOR CONTROLLING SR PROTEIN PHOSPHORYLATION, AND ANTIVIRAL AGENTS WHOSE ACTIVE INGREDIENTS COMPRISE AGENTS THAT CONTROL SR PROTEIN ACTIVITY
申请人:Hagiwara Masatoshi
公开号:US20100016359A1
公开(公告)日:2010-01-21
The present invention provides: (1) antiviral agents that act by reducing or inhibiting the activity of SR proteins, more specifically, (i) antiviral agents that act by enhancing dephosphorylation of SR proteins, and (ii) antiviral agents that act by inhibiting proteins that phosphorylate SR proteins; (2) antiviral agents that act by inhibiting the expression of SR proteins, and (3) antiviral agents that act by activating proteins that antagonize SR proteins. The present invention also provides compounds that inhibit SRPKs, which phosphorylate SR proteins. Such compounds inhibit the activity of SR proteins and have antiviral activities. Various new viruses including SARS have emerged, and thus the present invention provides long-lasting broad-spectrum antiviral agents applicable to new viruses.
Method for controlling SR protein phosphorylation, and antiviral agents whose active ingredients comprise agents that control SR protein activity
申请人:——
公开号:US07569536B2
公开(公告)日:2009-08-04
The present invention provides: (1) antiviral agents that act by reducing or inhibiting the activity of SR proteins, more specifically, (i) antiviral agents that act by enhancing dephosphorylation of SR proteins, and (ii) antiviral agents that act by inhibiting proteins that phosphorylate SR proteins; (2) antiviral agents that act by inhibiting the expression of SR proteins, and (3) antiviral agents that act by activating proteins that antagonize SR proteins. The present invention also provides compounds that inhibit SRPKs, which phosphorylate SR proteins. Such compounds inhibit the activity of SR proteins and have antiviral activities. Various new viruses including SARS have emerged, and thus the present invention provides long-lasting broad-spectrum antiviral agents applicable to new viruses.