Griswold W R, Madrid V O, Shaffer P M, Tappen D C, Pugh C S, Abbott M T
J Bacteriol. 1976 Mar;125(3):1040-7. doi: 10.1128/jb.125.3.1040-1047.1976.
The utilization of thymidine by Neurospora crassa is initiated by the pyrimidine deoxyribonucleoside 2'-hydroxylase reaction and the consequent formation of thymine and ribose. Thymine must then be oxidatively demethylated by the thymine 7-hydroxylase and uracil-5-carboxylic acid decarboxylase reactions. This article shows that the 2'-hydroxylase reaction can be regulated differently than the oxidative demethylation process and suggests that the 2'-hydroxylase has, in addition to the role of salvaging the pyrimidine ring, the role of providing ribose not only for the utilization of the demethylated pyrimidine but also for other metabolic processes. One way that this difference in regulation was observed was with the uc-1 mutation developed by Williams and Mitchell. The present communication shows that this mutation increases the activities of the 7-hydroxylase and the decarboxylase but has no comparable effect on the 2'-hydroxylase. Qualitatively similar effects on these enzymes were bought about by growth of wild-type Neurospora in media lacking ammonium ion, such as the Westergaard-Mitchell medium. The 2'-hydroxylase and 7-hydroxylase are also differently affected by the carbon dioxide content of the atmosphere above the growing culture and the growth temperature. Studies with inhibitors indicated that the carbon dioxide effect is dependent on protein synthesis.
粗糙脉孢菌对胸苷的利用始于嘧啶脱氧核糖核苷2'-羟化酶反应以及随后胸腺嘧啶和核糖的形成。胸腺嘧啶随后必须通过胸腺嘧啶7-羟化酶和尿嘧啶-5-羧酸脱羧酶反应进行氧化脱甲基化。本文表明,2'-羟化酶反应的调节方式与氧化脱甲基过程不同,并表明2'-羟化酶除了具有挽救嘧啶环的作用外,还具有不仅为脱甲基化嘧啶的利用而且为其他代谢过程提供核糖的作用。观察到这种调节差异的一种方式是利用威廉姆斯和米切尔培育的uc-1突变体。本通讯表明,这种突变增加了7-羟化酶和脱羧酶的活性,但对2'-羟化酶没有类似影响。在缺乏铵离子的培养基(如韦斯特加德-米切尔培养基)中培养野生型粗糙脉孢菌,对这些酶产生了定性相似的影响。2'-羟化酶和7-羟化酶还受到生长培养物上方大气中二氧化碳含量和生长温度的不同影响。用抑制剂进行的研究表明,二氧化碳效应依赖于蛋白质合成。