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核糖磷酸胞内水平的测定方法。

Methods for the determination of intracellular levels of ribose phosphates.

作者信息

Camici Marcella, Tozzi Maria Grazia, Ipata Piero Luigi

机构信息

Dipartimento di Biologia, Unità di Biochimica, Università di Pisa, Via S. Zeno 51, 56100 Pisa, Italy.

出版信息

J Biochem Biophys Methods. 2006 Oct 31;68(3):145-54. doi: 10.1016/j.jbbm.2006.07.001. Epub 2006 Jul 12.

Abstract

Ribose phosphates are either synthesized through the oxidative branch of the pentose phosphate pathway or stem from the phosphorolytic cleavage of the N-glycosidic bond of ribonucleosides. The two major pentose phosphates, ribose-5-phosphate and ribose-1-phosphate, can be readily interconverted by phosphopentomutase. Ribose-5-phosphate is also the direct precursor of 5-phosphoribosyl-1-pyrophosphate, which is used for both de novo and salvage synthesis of nucleotides. On the other hand, the phosphorolysis of deoxyribonucleosides is the major source of deoxyribose phosphates. While the destiny of the nucleobase stemming from nucleoside phosphorolysis has been extensively investigated, the fate of the sugar moiety has been somehow neglected. However, extensive advances have been made in elucidating the pathways by which the pentose phosphates, arising from nucleoside phosphorolysis, are either recycled, without opening of their furanosidic ring, or catabolized as a carbon and energy source. Nevertheless, many aspects of pentose phosphate metabolism, and the possible involvement of these compounds in a number of cellular processes still remain obscure. The comprehension of the role played by pentose phosphates may be greatly facilitated by the knowledge of their steady-state intracellular levels and of their changes in response to variations of intra- and extracellular signals.

摘要

核糖磷酸可以通过磷酸戊糖途径的氧化分支合成,或者来源于核糖核苷N-糖苷键的磷酸解。两种主要的戊糖磷酸,即5-磷酸核糖和1-磷酸核糖,可以通过磷酸戊糖变位酶轻松相互转化。5-磷酸核糖也是5-磷酸核糖-1-焦磷酸的直接前体,后者用于核苷酸的从头合成和补救合成。另一方面,脱氧核糖核苷的磷酸解是脱氧核糖磷酸的主要来源。虽然核苷磷酸解产生的碱基的命运已得到广泛研究,但糖部分的命运却在某种程度上被忽视了。然而,在阐明由核苷磷酸解产生的戊糖磷酸要么在不打开其呋喃糖环的情况下被循环利用,要么作为碳源和能源被分解代谢的途径方面已经取得了广泛进展。尽管如此,戊糖磷酸代谢的许多方面以及这些化合物在许多细胞过程中可能的参与情况仍然不清楚。了解细胞内稳态水平及其对细胞内和细胞外信号变化的响应变化,可能会极大地促进对戊糖磷酸所起作用的理解。

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