[EN] PYRROLIDINE AMIDE COMPOUNDS AS HISTONE DEMETHYLASE INHIBITORS [FR] COMPOSÉS DE PYRROLIDINE À UTILISER EN TANT QU'INHIBITEURS DE L'HISTONE DÉMÉTHYLASE
[EN] PYRROLIDINE AMIDE COMPOUNDS AS HISTONE DEMETHYLASE INHIBITORS [FR] COMPOSÉS DE PYRROLIDINE À UTILISER EN TANT QU'INHIBITEURS DE L'HISTONE DÉMÉTHYLASE
The present invention relates to processes for preparing certain 2-pyridones and 2-pyridinols, to novel compounds of these two types and to their use as biologically active compounds, in particular for controlling harmful microorganisms in crop protection, in the medicinal field and in the protection of materials.
Pyrrolidine amide compounds as histone demethylase inhibitors
申请人:GENENTECH, INC.
公开号:US10022354B2
公开(公告)日:2018-07-17
The present invention relates to compounds useful as inhibitors of one or more histone demethylases, such as KDM5. The invention also provides pharmaceutically acceptable compositions comprising compounds of the present invention and methods of using said compositions in the treatment of various disorders.
In a route towards the enantiomerically pure 2-methylpropane-1,3-diol mono(p-methoxybenzyl ether), which is an important starting material for natural product synthesis, a kinetic resolution approach by means of lipase-catalyzed hydrolysis as well as acylation has been elaborated. Candida antarctica lipase-catalyzed hydrolysis of the corresponding racemic acetate proceeded with high enantioselectivity (E 35). During the studies, a curious phenomenon was observed, namely, that the enantioselectivity gradually declined accompanying the progress of the hydrolysis. This was due to inhibition of the enzyme-catalyzed reaction caused by the accumulation of the resultant alcohol. The rate of reaction of the more reactive enantiomer became lower. This situation prompted a new process, which would minimize the contamination or the undesired enantiomer, prior to the enzyme-catalyzed hydrolysis. This was successfully achieved with the aid of another Pseudomonas cepacia lipase-catalyzed desymmetrization, taking advantage of the prochiral nature of the starting material, 2-methyl-1,3-propanediol, and the subsequent p-methoxybenzylation under mild conditions.
Haeussler; Brugger, Chemische Berichte, 1944, vol. 77/79, p. 152,157
作者:Haeussler、Brugger
DOI:——
日期:——
PYRROLIDINE AMIDE COMPOUNDS AS HISTONE DEMETHYLASE INHIBITORS