首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Ring-B functionalized androst-4-en-3-ones and ring-C substituted pregn-4-en-3-ones undergo differential transfonnation in Aspergillus tamarii KITA: Ring-A transformation with all C-6 substituted steroids and ring-D transfonnation with C-11 substituen
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Ring-B functionalized androst-4-en-3-ones and ring-C substituted pregn-4-en-3-ones undergo differential transfonnation in Aspergillus tamarii KITA: Ring-A transformation with all C-6 substituted steroids and ring-D transfonnation with C-11 substituen

机译:在tamarii KITA中,Ring-B功能化的Androst-4-en-3-ones和C环取代的pregn-4-en-3-ones进行差异转化,所有C-6取代的类固醇和D环都进行了Ring-A转化用C-11取代基进行转化

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The fungus Aspergillus tamarii transforms progesterone I into testololactone 5 in high yield through a four-step enzymatic pathway which is flexible to a range of steroidal substrates. To date, no studies have investigated the fate of C-6 (ring-B) and C-11 (ring-C) functionalized steroidal substrates on metabolism. Remarkably all of the C-6 functionalized substrates underwent reductive metabolism on ring-A in contrast to C-11 functionalized steroids where only ring-D oxidative or reductive transformation occurred. In order to discern the precise role of the functional groups in directing metabolism 6-ketoprogesterone 10 with functionality at C-6 and the ring-D methyl ketone underwent reductive and oxidative transformation on both terminal A and D rings showing that this functionality was directing metabolism. Androst-4-en-3,6-dione 12 devoid of ring-D functionality underwent reductive metabolism on ring-A proving that the C-6 functionality was directing metabolism to this ring with the ring-D methyl ketone responsible for generating transformation at this position. Functionality at C-11 exclusively controlled entry into and degree of metabolism on the lactonization pathway. These novel findings may have important bearing in the future understanding of structure activity relationships in revealing new metabolic pathways and further affords a unique opportunity for generation of novel bioactive steroidal compounds. (c) 2006 Elsevier B.V. All rights reserved.
机译:真菌tamarii tamarii通过四步酶促途径将黄体酮I高产率地转化为睾丸内酯5,该途径可适应多种类固醇底物。迄今为止,尚无研究研究C-6(环B)和C-11(环C)功能化甾体底物对代谢的影响。明显地,与仅发生环D的氧化或还原转化的C-11官能化的类固醇相反,所有的C-6官能化的底物都在环A上经历了还原代谢。为了识别官能团在指导代谢中的确切作用,在C-6处具有官能团的6-酮戊二酮10和环D甲基酮均在末端A和D环上进行了还原和氧化转化,表明该官能团在指导代谢。缺乏环D功能的Androst-4-en-3,6-dione 12在环A上进行了还原代谢,证明C-6功能通过环D甲基酮负责将新陈代谢导向该环,并在环上产生转化。这个位置。 C-11的功能专门控制内酯化途径的进入和代谢程度。这些新发现可能在揭示新的代谢途径方面对结构活性关系的未来理解具有重要意义,并且进一步为产生新的生物活性甾族化合物提供了独特的机会。 (c)2006 Elsevier B.V.保留所有权利。

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