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使用基于细胞和半胱天冬酶的高通量筛选试验发现取代的4-苯胺基-2-(2-吡啶基)嘧啶作为一系列新型凋亡诱导剂。第1部分:4-苯胺基基团的构效关系。

Discovery of substituted 4-anilino-2-(2-pyridyl)pyrimidines as a new series of apoptosis inducers using a cell- and caspase-based high throughput screening assay. Part 1: structure-activity relationships of the 4-anilino group.

作者信息

Sirisoma Nilantha, Kasibhatla Shailaja, Nguyen Bao, Pervin Azra, Wang Yang, Claassen Gisela, Tseng Ben, Drewe John, Cai Sui Xiong

机构信息

EpiCept Corporation, San Diego, CA 92121, USA.

出版信息

Bioorg Med Chem. 2006 Dec 1;14(23):7761-73. doi: 10.1016/j.bmc.2006.08.002. Epub 2006 Aug 21.

DOI:10.1016/j.bmc.2006.08.002
PMID:16919962
Abstract

A series of 4-anilino-2-(2-pyridyl)pyrimidines has been discovered as a new class of potent inducers of apoptosis using a cell-based HTS assay. Compound 5a was found to arrest T47D cells in G2/M and induced apoptosis. SAR studies showed that a small and electron-donating group at the meta-position of the anilino ring is important for activity. A 20-fold increase in potency, from hit compound 4-(3-methoxyanilino)-2-(2-pyridinyl)-6-(trifluoromethyl)pyrimidine (5a) to lead compound 4-(2,5-dimethoxyanilino)-2-(2-pyridinyl)-6-(trifluoromethyl)pyrimidine (5l), was obtained through the SAR studies. Compound 5l is highly active with an EC50 value of 18 nM in the caspase activation assay in T47D breast cells. Interestingly, 5a and other meta-mono-substituted compounds were active against T47D cells but were not active against H1299 and HT29 cells, while 5l and other 2,5-disubstituted compounds were active against all the three cells. In a tubulin polymerization assay, compound 5l inhibited tubulin polymerization with an IC50 value of < 0.5 microM, while 5a was not active up to 50 microM.

摘要

利用基于细胞的高通量筛选试验,发现了一系列4-苯胺基-2-(2-吡啶基)嘧啶作为一类新的强效凋亡诱导剂。发现化合物5a能使T47D细胞停滞在G2/M期并诱导凋亡。构效关系研究表明,苯胺环间位上的一个小的供电子基团对活性很重要。通过构效关系研究,活性从先导化合物4-(3-甲氧基苯胺基)-2-(2-吡啶基)-6-(三氟甲基)嘧啶(5a)提高到先导化合物4-(2,5-二甲氧基苯胺基)-2-(2-吡啶基)-6-(三氟甲基)嘧啶(5l),活性提高了20倍。化合物5l在T47D乳腺癌细胞的半胱天冬酶激活试验中具有高活性,EC50值为18 nM。有趣的是,5a和其他间位单取代化合物对T47D细胞有活性,但对H1299和HT29细胞无活性,而5l和其他2,5-二取代化合物对所有三种细胞均有活性。在微管蛋白聚合试验中,化合物5l抑制微管蛋白聚合,IC50值<0.5 microM,而5a在50 microM时仍无活性。

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