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嘌呤补救和分解代谢的先天性缺陷。

Inborn Errors of Purine Salvage and Catabolism.

作者信息

Camici Marcella, Garcia-Gil Mercedes, Allegrini Simone, Pesi Rossana, Bernardini Giulia, Micheli Vanna, Tozzi Maria Grazia

机构信息

Unità di Biochimica, Dipartimento di Biologia, Università di Pisa, Via San Zeno 51, 56127 Pisa, Italy.

Unità di Fisiologia Generale, Dipartimento di Biologia, Università di Pisa, Via San Zeno 31, 56127 Pisa, Italy.

出版信息

Metabolites. 2023 Jun 24;13(7):787. doi: 10.3390/metabo13070787.

Abstract

Cellular purine nucleotides derive mainly from de novo synthesis or nucleic acid turnover and, only marginally, from dietary intake. They are subjected to catabolism, eventually forming uric acid in humans, while bases and nucleosides may be converted back to nucleotides through the salvage pathways. Inborn errors of the purine salvage pathway and catabolism have been described by several researchers and are usually referred to as rare diseases. Since purine compounds play a fundamental role, it is not surprising that their dysmetabolism is accompanied by devastating symptoms. Nevertheless, some of these manifestations are unexpected and, so far, have no explanation or therapy. Herein, we describe several known inborn errors of purine metabolism, highlighting their unexplained pathological aspects. Our intent is to offer new points of view on this topic and suggest diagnostic tools that may possibly indicate to clinicians that the inborn errors of purine metabolism may not be very rare diseases after all.

摘要

细胞内的嘌呤核苷酸主要来源于从头合成或核酸周转,而饮食摄入仅占少量。它们会经历分解代谢,最终在人体内形成尿酸,而碱基和核苷可通过补救途径再转化为核苷酸。几位研究人员已经描述了嘌呤补救途径和分解代谢的先天性缺陷,这些缺陷通常被称为罕见病。由于嘌呤化合物起着至关重要的作用,因此它们的代谢紊乱伴随着严重症状也就不足为奇了。然而,其中一些表现是出乎意料的,并且迄今为止尚无解释或治疗方法。在此,我们描述了几种已知的嘌呤代谢先天性缺陷,突出了它们无法解释的病理方面。我们的目的是就该主题提供新的观点,并建议可能向临床医生表明嘌呤代谢先天性缺陷可能毕竟并非非常罕见疾病的诊断工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61de/10383617/c91846e71707/metabolites-13-00787-g001.jpg

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