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核苷转运及相关代谢。

Nucleoside transport and associated metabolism.

机构信息

Abteilung Pflanzenphysiologie, Fachbereich Biologie, Technische Universität Kaiserslautern, Kaiserslautern, Germany.

出版信息

Plant Biol (Stuttg). 2010 Sep;12 Suppl 1:26-34. doi: 10.1111/j.1438-8677.2010.00351.x.

Abstract

Nucleosides are intermediates of nucleotide metabolism. Nucleotide de novo synthesis generates the nucleoside monophosphates AMP and UMP, which are further processed to all purine and pyrimidine nucleotides involved in multiple cellular reactions, including the synthesis of nucleic acids. Catabolism of these substances results in the formation of nucleosides, which are further degraded by nucleoside hydrolase to nucleobases. Both nucleosides and nucleobases can be exchanged between cells and tissues through multiple isoforms of corresponding transport proteins. After uptake into a cell, nucleosides and nucleobases can undergo salvage reactions or catabolism. Whereas energy is preserved by salvage pathway reactions, catabolism liberates ammonia, which is then incorporated into amino acids. Keeping the balance between nitrogen consumption during nucleotide de novo synthesis and ammonia liberation by nucleotide catabolism is essential for correct plant development. Senescence and seed germination represent situations in plant development where marked fluctuations in nucleotide pools occur. Furthermore, extracellular nucleotide metabolism has become an immensely interesting research topic. In addition, selected aspects of nucleoside transport in yeast, protists and humans are discussed.

摘要

核苷是核苷酸代谢的中间产物。核苷酸从头合成生成核苷一磷酸 AMP 和 UMP,它们进一步加工成参与多种细胞反应的所有嘌呤和嘧啶核苷酸,包括核酸的合成。这些物质的分解代谢导致核苷的形成,核苷进一步被核苷水解酶降解为碱基。核苷和碱基可以通过相应转运蛋白的多种同工型在细胞和组织之间交换。核苷和碱基进入细胞后,可以进行补救反应或分解代谢。虽然补救途径反应可以保存能量,但分解代谢会释放氨,然后氨被掺入氨基酸中。保持核苷酸从头合成过程中氮的消耗和核苷酸分解代谢过程中氨的释放之间的平衡对于植物的正常发育是至关重要的。衰老和种子萌发是植物发育过程中核苷酸池出现明显波动的两个阶段。此外,细胞外核苷酸代谢已成为一个非常有趣的研究课题。此外,还讨论了酵母、原生生物和人类中核苷转运的一些方面。

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