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烷基取代的聚氨基异羟肟酸:一类新型的靶向组蛋白脱乙酰酶抑制剂。

Alkyl-substituted polyaminohydroxamic acids: a novel class of targeted histone deacetylase inhibitors.

作者信息

Varghese Sheeba, Gupta Deepak, Baran Tiffany, Jiemjit Anchalee, Gore Steven D, Casero Robert A, Woster Patrick M

机构信息

Department of Pharmaceutical Sciences, Eugene Applebaum College of Pharmacy and Health Sciences, Wayne State University, Detroit, Michigan 48202, USA.

出版信息

J Med Chem. 2005 Oct 6;48(20):6350-65. doi: 10.1021/jm0505009.

Abstract

The reversible acetylation of histones is critical for regulation of eukaryotic gene expression. The histone deacetylase inhibitors trichostatin (TSA, 1), MS-275 (2) and suberoylanilide hydroxamic acid (SAHA, 3) arrest growth in transformed cells and in human tumor xenografts. However, 1-3 suffer from lack of specificity among the various HDAC isoforms, prompting us to design and synthesize polyaminohydroxamic acid (PAHA) derivatives 6-21. We felt that PAHAs would be selectively directed to chromatin and associated histones by the positively charged polyamine side chain. At 1 microM, compounds 12, 15 and 20 inhibited HDAC by 74.86, 59.99 and 73.85%, respectively. Although 20 was a less potent HDAC inhibitor than 1, it was more potent than 2, more effective as an initiator of histone hyperacetylation, and significantly more effective than 2 at re-expressing p21Waf1 in ML-1 leukemia cells. On the basis of these results, PAHAs 6-21 represent an important new chemical class of HDAC inhibitors.

摘要

组蛋白的可逆乙酰化对于真核基因表达的调控至关重要。组蛋白去乙酰化酶抑制剂曲古抑菌素(TSA,1)、MS-275(2)和辛二酰苯胺异羟肟酸(SAHA,3)能使转化细胞和人肿瘤异种移植瘤的生长停滞。然而,1 - 3在各种HDAC亚型中缺乏特异性,这促使我们设计并合成聚氨基异羟肟酸(PAHA)衍生物6 - 21。我们认为PAHAs可通过带正电荷的多胺侧链选择性地作用于染色质和相关组蛋白。在1微摩尔浓度下,化合物12、15和20分别抑制HDAC达74.86%、59.99%和73.85%。尽管20作为HDAC抑制剂的效力不如1,但它比2更有效,作为组蛋白高乙酰化的引发剂更有效,并且在ML - 1白血病细胞中重新表达p21Waf1方面比2显著更有效。基于这些结果,PAHAs 6 - 21代表了一类重要的新型HDAC抑制剂化学类别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a3e/3554812/68a33079aa3c/nihms-434678-f0001.jpg

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