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生物素甲基4-(氨甲基)苯甲酸酯是一种人源生物素酶的竞争性抑制剂。

Biotinyl-methyl 4-(amidomethyl)benzoate is a competitive inhibitor of human biotinidase.

作者信息

Kobza Keyna A, Chaiseeda Kittichai, Sarath Gautam, Takacs James M, Zempleni Janos

机构信息

Department of Nutrition and Health Sciences, University of Nebraska-Lincoln, Lincoln, NE 68583-0806, USA.

出版信息

J Nutr Biochem. 2008 Dec;19(12):826-32. doi: 10.1016/j.jnutbio.2007.11.002. Epub 2008 May 13.

Abstract

Posttranslational modification of histones by biotinylation can be catalyzed by both biotinidase (BTD) and holocarboxylase synthetase. Biotinylation of histones is an important epigenetic mechanism to regulate gene expression, DNA repair, and chromatin remodeling. The role of BTD in histone biotinylation is somewhat ambiguous, given that BTD also catalyzes removal of the biotin tag from histones. Here, we sought to develop BTD inhibitors for future studies of the role of BTD in altering chromatin structure. We adopted an existing colorimetric BTD assay for use in a novel 96-well plate format to permit high-throughput screening of potential inhibitors. Biotin analogs were chemically synthesized and tested for their ability to inhibit human BTD. Seven of these compounds inhibited BTD by 26-80%. Biotinyl-methyl 4-(amidomethyl)benzoate had the largest effect on BTD, causing an 80% inhibition at 1 mM concentration. Enzyme kinetics studies were conducted to determine V(max), K(m) and K(i) for the seven inhibitors; kinetics were consistent with the hypothesis that biotinyl-methyl 4-(amidomethyl)benzoate and the other compounds acted by competitive inhibition of BTD. Finally, biotinyl-methyl 4-(amidomethyl)benzoate did not affect biotin transport in human cells, suggesting specificity in regard to biotin-related processes.

摘要

生物素化对组蛋白进行的翻译后修饰可由生物素酶(BTD)和全羧化酶合成酶催化。组蛋白的生物素化是调节基因表达、DNA修复和染色质重塑的重要表观遗传机制。鉴于BTD还催化从组蛋白上去除生物素标签,其在组蛋白生物素化中的作用有些模糊。在此,我们试图开发BTD抑制剂,以便未来研究BTD在改变染色质结构中的作用。我们采用了一种现有的比色法BTD检测方法,并将其用于新型96孔板形式,以允许对潜在抑制剂进行高通量筛选。化学合成了生物素类似物,并测试了它们抑制人BTD的能力。其中七种化合物对BTD的抑制率为26%-80%。生物素基-甲基4-(氨甲基)苯甲酸对BTD的影响最大,在1 mM浓度下可导致80%的抑制率。进行了酶动力学研究,以确定这七种抑制剂的V(max)、K(m)和K(i);动力学结果与生物素基-甲基4-(氨甲基)苯甲酸和其他化合物通过竞争性抑制BTD起作用的假设一致。最后,生物素基-甲基4-(氨甲基)苯甲酸不影响人细胞中的生物素转运,表明其在生物素相关过程方面具有特异性。

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