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嘌呤生物合成代谢障碍。

Disorders of purine biosynthesis metabolism.

机构信息

Laboratoire des Maladies Métaboliques Héréditaires/Biochimie Génétique et Centre de Dépistage Néonatal, Cliniques Universitaires Saint-Luc, UCLouvain, B-1200 Brussels, Belgium; Institut des Maladies Rares, Cliniques Universitaires Saint-Luc, UCLouvain, B-1200 Brussels, Belgium; Department of Biochemistry, de Duve Institute, UCLouvain, Brussels, Belgium.

Laboratoire des Maladies Métaboliques Héréditaires/Biochimie Génétique et Centre de Dépistage Néonatal, Cliniques Universitaires Saint-Luc, UCLouvain, B-1200 Brussels, Belgium; Institut des Maladies Rares, Cliniques Universitaires Saint-Luc, UCLouvain, B-1200 Brussels, Belgium.

出版信息

Mol Genet Metab. 2022 Jul;136(3):190-198. doi: 10.1016/j.ymgme.2021.12.016. Epub 2021 Dec 30.

Abstract

Purines are essential molecules that are components of vital biomolecules, such as nucleic acids, coenzymes, signaling molecules, as well as energy transfer molecules. The de novo biosynthesis pathway starts from phosphoribosylpyrophosphate (PRPP) and eventually leads to the synthesis of inosine monophosphate (IMP) by means of 10 sequential steps catalyzed by six different enzymes, three of which are bi-or tri-functional in nature. IMP is then converted into guanosine monophosphate (GMP) or adenosine monophosphate (AMP), which are further phosphorylated into nucleoside di- or tri-phosphates, such as GDP, GTP, ADP and ATP. This review provides an overview of inborn errors of metabolism pertaining to purine synthesis in humans, including either phosphoribosylpyrophosphate synthetase (PRS) overactivity or deficiency, as well as adenylosuccinate lyase (ADSL), 5-aminoimidazole-4-carboxamide ribonucleotide formyltransferase/IMP cyclohydrolase (ATIC), phosphoribosylaminoimidazole succinocarboxamide synthetase (PAICS), and adenylosuccinate synthetase (ADSS) deficiencies. ITPase deficiency is being described as well. The clinical spectrum of these disorders is broad, including neurological impairment, such as psychomotor retardation, epilepsy, hypotonia, or microcephaly; sensory involvement, such as deafness and visual disturbances; multiple malformations, as well as muscle presentations or consequences of hyperuricemia, such as gouty arthritis or kidney stones. Clinical signs are often nonspecific and, thus, overlooked. It is to be hoped that this is likely to be gradually overcome by using sensitive biochemical investigations and next-generation sequencing technologies.

摘要

嘌呤是构成核酸、辅酶、信号分子以及能量转移分子等重要生物分子的必需分子。从头合成途径从 5-磷酸核糖焦磷酸(PRPP)开始,最终通过 6 种不同酶的 10 个连续步骤合成肌苷单磷酸(IMP),其中 3 种酶本质上是双功能或三功能的。IMP 然后转化为鸟苷单磷酸(GMP)或腺苷单磷酸(AMP),进一步磷酸化为核苷二磷酸或三磷酸,如 GDP、GTP、ADP 和 ATP。本文综述了与人类嘌呤合成相关的先天性代谢错误,包括磷核糖焦磷酸合成酶(PRS)过度活跃或缺乏,以及腺嘌呤核苷琥珀酸裂解酶(ADSL)、5-氨基咪唑-4-羧酰胺核糖核苷酸甲酰基转移酶/IMP 环化水解酶(ATIC)、磷核糖基氨基咪唑琥珀酰氨合成酶(PAICS)和腺嘌呤核苷琥珀酸合成酶(ADSS)缺乏。本文还描述了三磷酸肌醇酶缺乏症。这些疾病的临床表现广泛,包括神经损伤,如精神运动迟缓、癫痫、张力减退或小头畸形;感觉受累,如耳聋和视力障碍;多种畸形,以及肌肉表现或高尿酸血症的后果,如痛风性关节炎或肾结石。临床症状往往不特异,因此容易被忽视。希望通过使用敏感的生化研究和下一代测序技术,这种情况能够逐渐得到改善。

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