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硫胺素和选定的硫胺素抗维生素 - 生物活性和合成方法。

Thiamine and selected thiamine antivitamins - biological activity and methods of synthesis.

机构信息

Department of Cytobiochemistry, Faculty of Biology and Chemistry, University of Bialystok, Ciolkowskiego 1J, 15-245 Białystok, Poland.

Department of Natural Product Chemistry, Faculty of Biology and Chemistry, University of Bialystok, Ciolkowskiego 1K, 15-245 Białystok, Poland

出版信息

Biosci Rep. 2018 Jan 10;38(1). doi: 10.1042/BSR20171148. Print 2018 Feb 28.

Abstract

Thiamine plays a very important coenzymatic and non-coenzymatic role in the regulation of basic metabolism. Thiamine diphosphate is a coenzyme of many enzymes, most of which occur in prokaryotes. Pyruvate dehydrogenase and 2-oxoglutarate dehydrogenase complexes as well as transketolase are the examples of thiamine-dependent enzymes present in eukaryotes, including human. Therefore, thiamine is considered as drug or diet supplement which can support the treatment of many pathologies including neurodegenerative and vascular system diseases. On the other hand, thiamine antivitamins, which can interact with thiamine-dependent enzymes impeding their native functions, thiamine transport into the cells or a thiamine diphosphate synthesis, are good propose to drug design. The development of organic chemistry in the last century allowed the synthesis of various thiamine antimetabolites such as amprolium, pyrithiamine, oxythiamine, or 3-deazathiamine. Results of biochemical and theoretical chemistry research show that affinity to thiamine diphosphate-dependent enzymes of these synthetic molecules exceeds the affinity of native coenzyme. Therefore, some of them have already been used in the treatment of coccidiosis (amprolium), other are extensively studied as cytostatics in the treatment of cancer or fungal infections (oxythiamine and pyrithiamine). This review summarizes the current knowledge concerning the synthesis and mechanisms of action of selected thiamine antivitamins and indicates the potential of their practical use.

摘要

硫胺素在调节基础代谢中起着非常重要的辅酶和非辅酶作用。硫胺素二磷酸是许多酶的辅酶,其中大多数存在于原核生物中。丙酮酸脱氢酶和 2-氧代戊二酸脱氢酶复合物以及转酮醇酶是存在于真核生物(包括人类)中的依赖硫胺素的酶的例子。因此,硫胺素被认为是一种药物或饮食补充剂,可以支持治疗许多病理学,包括神经退行性疾病和血管系统疾病。另一方面,硫胺素抗维生素可以与依赖硫胺素的酶相互作用,阻碍其天然功能、硫胺素进入细胞或硫胺素二磷酸的合成,这是药物设计的良好提议。上个世纪有机化学的发展允许合成各种硫胺素抗代谢物,如安普罗姆、吡哆醇、氧硫胺或 3-脱氮硫胺。生化和理论化学研究的结果表明,这些合成分子对依赖硫胺素二磷酸的酶的亲和力超过了天然辅酶的亲和力。因此,其中一些已被用于治疗球虫病(安普罗姆),其他则被广泛研究作为细胞抑制剂用于治疗癌症或真菌感染(氧硫胺和吡哆醇)。本文综述了关于选定的硫胺素抗维生素的合成和作用机制的最新知识,并指出了它们实际应用的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7b3/6435462/2125bc2dfc08/bsr-38-bsr20171148-g1.jpg

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