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人酰基辅酶 A 硫酯酶-1 和 -2 对布洛芬酰基辅酶 A 和其他 2-APA 酰基辅酶 A 酯的水解及其在普洛芬对映体反转中的可能作用。

Hydrolysis of ibuprofenoyl-CoA and other 2-APA-CoA esters by human acyl-CoA thioesterases-1 and -2 and their possible role in the chiral inversion of profens.

机构信息

Medicinal Chemistry, Department of Pharmacy and Pharmacology, University of Bath, Claverton Down, Bath BA2 7AY, UK.

出版信息

Biochem Pharmacol. 2013 Dec 1;86(11):1621-5. doi: 10.1016/j.bcp.2013.08.067. Epub 2013 Sep 13.

DOI:10.1016/j.bcp.2013.08.067
PMID:24041740
Abstract

Ibuprofen and related 2-arylpropanoic acid (2-APA) drugs are often given as a racemic mixture and the R-enantiomers undergo activation in vivo by metabolic chiral inversion. The chiral inversion pathway consists of conversion of the drug to the coenzyme A ester (by an acyl-CoA synthetase) followed by chiral inversion by α-methylacyl-CoA racemase (AMACR; P504S). The enzymes responsible for hydrolysis of the product S-2-APA-CoA ester to the active S-2-APA drug have not been identified. In this study, conversion of a variety of 2-APA-CoA esters by human acyl-CoA thioesterase-1 and -2 (ACOT-1 and -2) was investigated. Human recombinant ACOT-1 and -2 (ACOT-1 and -2) were both able to efficiently hydrolyse a variety of 2-APA-CoA substrates. Studies with the model substrates R- and S-2-methylmyristoyl-CoA showed that both enzymes were able to efficiently hydrolyse both of the epimeric substrates with (2R)- and (2S)- methyl groups. ACOT-1 is located in the cytosol and is able to hydrolyse 2-APA-CoA esters exported from the mitochondria and peroxisomes for inhibition of cyclo-oxygenase-1 and -2 in the endoplasmic reticulum. It is a prime candidate to be the enzyme responsible for the pharmacological action of chiral inverted drugs. ACOT-2 activity may be important in 2-APA toxicity effects and for the regulation of mitochondrial free coenzyme A levels. These results support the idea that 2-APA drugs undergo chiral inversion via a common pathway.

摘要

布洛芬和相关的 2-芳基丙酸(2-APA)药物通常以外消旋混合物的形式给药,而 R-对映异构体在体内通过代谢手性反转进行激活。手性反转途径包括将药物转化为辅酶 A 酯(通过酰基辅酶 A 合成酶),然后由α-甲基酰基辅酶 A racemase(AMACR;P504S)进行手性反转。负责水解产物 S-2-APA-CoA 酯为活性 S-2-APA 药物的酶尚未确定。在这项研究中,研究了各种 2-APA-CoA 酯的人酰基辅酶 A 硫酯酶-1 和 -2(ACOT-1 和 -2)的转化。人重组 ACOT-1 和 -2(ACOT-1 和 -2)都能够有效地水解各种 2-APA-CoA 底物。使用模型底物 R-和 S-2-甲基肉豆蔻酰-CoA 的研究表明,两种酶都能够有效地水解具有(2R)-和(2S)-甲基的两种对映异构体底物。ACOT-1 位于细胞质中,能够水解从线粒体和过氧化物体输出的 2-APA-CoA 酯,以抑制内质网中的环加氧酶-1 和 -2。它是负责手性反转药物药理作用的主要候选酶。ACOT-2 活性可能对 2-APA 毒性作用和调节线粒体游离辅酶 A 水平很重要。这些结果支持 2-APA 药物通过共同途径进行手性反转的观点。

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