<i>N</i>-Acylanilines, Herbicide−CHA Chimera, and Amino Acid Analogues as Novel Chemical Hybridizing Agents for Wheat (<i>Triticum aestivum</i> L.)
作者:Kajal Chakraborty、C. Devakumar
DOI:10.1021/jf051458t
日期:2005.10.1
development, chemical induction of male sterility mediated technology based on chemical hybridizing agents (CHAs) holds a great potential. N-Acylaniline derivatives, namely, ethyl 4'-fluoro oxanilate (1) and ethyl 4'-trifluoromethyl oxanilate (2) containing halogen atoms in the para position of the aryl ring and substituted amide linkage (-CO-NH-) in the acyl side chain induced >98% spikelet sterility on three
Provided herein are compounds, pharmaceutical compositions comprising such compounds, and methods of using such compounds to treat diseases or disorders associated with HDAC1 and/or HDAC2 activity.
Substituted piperazines as selective HDAC1,2 inhibitors
申请人:Regenacy Pharmaceuticals, LLC
公开号:US10385031B2
公开(公告)日:2019-08-20
Provided herein are compounds of Formula II, pharmaceutical compositions comprising such compounds, and methods of using such compounds to treat diseases or disorders associated with HDAC1 and/or HDAC2 activity
本文提供了式 II 的化合物、包含此类化合物的药物组合物以及使用此类化合物治疗与 HDAC1 和/或 HDAC2 活性相关的疾病或紊乱的方法
Novel inhibitors of prolyl 4-hydroxylase. 3. Inhibition by the substrate analog N-oxaloglycine and its derivatives
作者:C. Jane Cunliffe、Trevor J. Franklin、Neil J. Hales、George B. Hill
DOI:10.1021/jm00092a016
日期:1992.7
N-Oxaloglycine (3) is an alpha-ketoglutarate (1) analogue that is a competitive inhibitor of prolyl 4-hydroxylase (EC 1.14.11.2). A study of the structure-activity relationships of some other oxalo derivatives shows that substitution on the glycine moiety modulates activity stereoselectively and that if the omega-carboxylate is homologated or replaced by either acylsulfonamides or anilide, then activity is sharply reduced. This sensitivity to these changes is contrasted with the relative insensitivity of another putative alpha-ketoglutarate analogue, pyridine-2,5-dicarboxylic acid (2), and the implication is discussed that compounds of both series are unlikely to bind to prolyl hydroxylase in the same way even though both inhibit the enzyme competitively.
PIPERAZINE DERIVATIVES AS SELECTIVE HDAC1,2 INHIBITORS