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乳清酸(乳清酸):一种必需且多功能的分子。

Orotate (orotic acid): An essential and versatile molecule.

作者信息

Löffler M, Carrey E A, Zameitat E

机构信息

a Institute of Physiological Chemistry, Faculty of Medicine, Philipps University Marburg , Marburg , Germany.

b Institute of Child Health, University College London , GB.

出版信息

Nucleosides Nucleotides Nucleic Acids. 2016 Dec;35(10-12):566-577. doi: 10.1080/15257770.2016.1147580.

Abstract

Orotate (OA) is well-known as a precursor in biosynthesis of pyrimidines; in mammals it is released from the mitochondrial dihydroorotate dehydrogenase (DHODH) for conversion to UMP by the cytoplasmic UMP synthase enzyme. OA is also a normal part of the diet, being found in milk and dairy products, and it is converted to uridine for use in the pyrimidine salvage pathway predominantly in liver, kidney and erythrocytes. Early research into nutrition identified orotate as "vitamin B13," and its use as a complex with organic cations or metal ions was promulgated in body-building, and in assisting therapies of metabolic syndromes. It has recently been established that the amelioration of gout by dairy products arises from the competition of orotate and urate at the hURAT1 transporter. The orotic aciduria that arises in children with defective UMP synthase can be rescued by oral uridine therapy, since UMP is the end-product and also a feedback inhibitor of the de novo pathway. In contrast, Miller (dysmorphology) syndrome is connected with defects in DHODH, and hence in the supply of OA, and cannot be helped by uridine. Other models of dysmorphisms are connected with enzymes early in the pyrimidine de novo pathway. We conclude that the OA molecule is itself required for the regulation of genes that are important in the development of cells, tissues and organisms.

摘要

乳清酸(OA)是嘧啶生物合成中著名的前体;在哺乳动物中,它从线粒体二氢乳清酸脱氢酶(DHODH)释放出来,由细胞质中的尿苷一磷酸合酶转化为尿苷一磷酸(UMP)。OA也是饮食中的正常成分,存在于牛奶和乳制品中,它主要在肝脏、肾脏和红细胞中转化为尿苷,用于嘧啶补救途径。早期的营养研究将乳清酸鉴定为“维生素B13”,其与有机阳离子或金属离子形成的复合物在健身以及辅助治疗代谢综合征方面得到了推广。最近已经确定,乳制品对痛风的改善作用源于乳清酸和尿酸盐在人尿酸转运蛋白1(hURAT1)上的竞争。UMP合酶缺陷的儿童出现的乳清酸尿症可以通过口服尿苷治疗得到缓解,因为UMP是从头合成途径的终产物,也是该途径的反馈抑制剂。相比之下,米勒(畸形)综合征与DHODH缺陷有关,因此与OA的供应有关,尿苷对此并无帮助。其他畸形模型与嘧啶从头合成途径早期的酶有关。我们得出结论,OA分子本身对于调节在细胞、组织和生物体发育中重要的基因是必需的。

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