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首页> 外文期刊>Applied and Environmental Microbiology >19F Nuclear Magnetic Resonance Analysis of 5-Fluorouracil Metabolism in Four Differently Pigmented Strains of Nectria haematococca
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19F Nuclear Magnetic Resonance Analysis of 5-Fluorouracil Metabolism in Four Differently Pigmented Strains of Nectria haematococca

机译:19F核磁共振分析的四个不同色素血球菌的5-氟尿嘧啶代谢。

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19F nuclear magnetic resonance spectroscopy was used to study the metabolism of 5-fluorouracil in four strains of Nectria haematococca which displayed similar sensitivities to growth inhibition by this compound but differed in their pigmentation. The major metabolites, 5-fluorouridine and α-fluoro-β-alanine, were excreted into the medium by all four strains. The classical ribofluoronucleotides (5-fluorouridine-5′-monophosphate, -diphosphate, and -triphosphate) and α-fluoro-β-alanine were identified in the acid-soluble fraction of perchloric acid extracts of mycelia. Two hydrolysis products of 5-fluorouracil incorporated into RNA were found in the acid-insoluble pool. They were unambiguously assigned to 5-fluorouridine-2′-monophosphate and 3′-monophosphate with specific hydrolysis reactions on isolated RNA. The lack of fluorodeoxyribonucleotides and the fact that the four strains incorporated similar amounts of fluororibonucleotides into their RNAs strongly suggest an RNA-directed mechanism of cytotoxicity for 5-fluorouracil. The heavily pigmented wild type differed from the three low-pigmented strains in its low uptake of 5-fluorouracil and, consequently, in its reduced biosynthesis of 5-fluorouridine and α-fluoro-β-alanine. At present, it is not clear whether this change in 5-fluorouracil metabolism is a side effect of pigment production or results from another event.
机译:19 F核磁共振波谱用于研究4株血球菌中5氟尿嘧啶的代谢,这些菌株对这种化合物的生长抑制表现出相似的敏感性,但色素沉着有所不同。主要的代谢物5-氟尿苷和α-氟-β-丙氨酸被所有四个菌株排入培养基。在菌丝体高氯酸提取物的酸溶级分中鉴定出经典的核糖氟核苷酸(5-氟尿苷-5'-单磷酸,-二磷酸和-三磷酸)和α-氟-β-丙氨酸。在不溶于酸的溶液中发现了两种掺入RNA的5-氟尿嘧啶的水解产物。通过分离的RNA上的特异性水解反应,将它们明确分配为5-氟尿苷2'-单磷酸和3'-单磷酸。缺少氟脱氧核糖核苷酸以及这四个菌株在其RNA中掺入相似量的氟核糖核苷酸的事实有力地表明了RNA定向的5-氟尿嘧啶细胞毒性机制。色素沉着的野生型与三种低色素菌株的不同之处在于其对5-氟尿嘧啶的低摄取,因此其5-氟尿苷和α-氟-β-丙氨酸的生物合成减少。目前,尚不清楚5-氟尿嘧啶代谢的这种变化是色素生成的副作用还是另一事件的结果。

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