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外源嘧啶作为粘红酵母细胞氮源的利用情况。

Utilization of exogenous pyrimidines as a source of nitrogen by cells of the yeast Rhodotorula glutinis.

作者信息

Milstein O A, Bekker M L

出版信息

J Bacteriol. 1976 Jul;127(1):1-6. doi: 10.1128/jb.127.1.1-6.1976.

Abstract

Uptake and intracellular transformation of pyrimidines supplying cells of the yeast Rhodotorula glutinis with nitrogen have been studied. The amine nitrogen of cytosine was found to be the easiest to utilize. The presence in the medium of inorganic ammonia along with cytosine had a slight effect on cytosine deaminase (EC 3.5.4.1) activity. The uracil produced entered into the nutrient medium with no fission break of the pyridmidine ring. In the absence of any other source of nitrogen, the cells of the yeast R. glutinis utilized nitrogen of the pyrimidine ring of oxypyrimidines. Catabolism of uracil followed the reductive pattern, with release of carbon dioxide; this was accompanied by synthesis of the key enzyme of pyrimidine catabolism, dihydrouracil dehydrogenase (EC 1.3.1.1), whose activity rose 10-fold. With thymidne as the sole source of nitrogen, the lag-phase growth of the yeast cells was maximum. Catabolism of the pyrimidine ring of thymine was possibly preceded by its transformation into uracil. With no source of nitrogen easily utilized, the uridine 5'-monophosphate content in the generally acid-soluble pool rose. Our discussion of the regulation of catabolism of exogenous pyrimidine bases by the yeast R. glutinis takes into account the fact that transformations of pyrimidine bases are determined by how easily the cells can use a particular base as a source of nitrogen.

摘要

已对向粘红酵母细胞供应氮的嘧啶的摄取和细胞内转化进行了研究。发现胞嘧啶的胺氮最易被利用。培养基中无机氨与胞嘧啶共存对胞嘧啶脱氨酶(EC 3.5.4.1)活性有轻微影响。产生的尿嘧啶进入营养培养基,嘧啶环无裂变断裂。在没有任何其他氮源的情况下,粘红酵母细胞利用氧嘧啶嘧啶环中的氮。尿嘧啶的分解代谢遵循还原模式,伴有二氧化碳释放;这伴随着嘧啶分解代谢关键酶二氢尿嘧啶脱氢酶(EC 1.3.1.1)的合成,其活性提高了10倍。以胸腺嘧啶为唯一氮源时,酵母细胞的滞后期生长最长。胸腺嘧啶嘧啶环的分解代谢可能先于其转化为尿嘧啶。在没有易于利用的氮源时,一般酸溶性库中的尿苷5'-单磷酸含量升高。我们对粘红酵母对外源嘧啶碱基分解代谢调控的讨论考虑到嘧啶碱基的转化取决于细胞利用特定碱基作为氮源的难易程度这一事实。

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