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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Distinct metabolic handling of 3beta-hydroxy-17a-oxa-D-homo-5alpha-androstan-17-one by the filamentous fungus Aspergillus tamarii KITA: Evidence in support of steroid/hydroxylase binding hypothesis.
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Distinct metabolic handling of 3beta-hydroxy-17a-oxa-D-homo-5alpha-androstan-17-one by the filamentous fungus Aspergillus tamarii KITA: Evidence in support of steroid/hydroxylase binding hypothesis.

机译:tamarii tamarii丝状真菌对3beta-hydroxy-17a-oxa-D-homo-5alpha-androstan-17-one的不同代谢处理:支持类固醇/羟化酶结合假说的证据。

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Aspergillus tamarii KITA transforms progesterone in to testololactone in high yield through a sequential four-step enzymatic pathway which also has the flexibility to transform a range of steroidal substrates. This study has investigated the further metabolism of testololactone and a range of fully saturated steroidal lactone analogues. In contrast to testololactone, which even after 120 h incubation did not undergo further metabolism, the lactone analogues entered the minor hydroxylation pathway. Uniquely, after forming 3beta-hydroxy-17a-oxa-D-homo-5alpha-androstan-17-one (48 h) 4 distinct positions on the steroid skeleton were monohydroxylated (11beta, 6beta, 7beta, 11alpha) which geometrically relate to the four binding positions (normal, reverse, inverted normal and inverted reverse) possible within the steroidal hydroxylase(s). This is the first evidence demonstrating the four possible steroid/hydroxylase(s) binding interactions with a single molecule that has previously been hypothesized with a single organism. In addition a rare 1beta-monohydroxylation was observed, this may be indicative of dehydration generating 1-ene functionality in A. tamarii rather than dehydrogenation as reported in man and microorganisms. The importance of these findings in relation to steroid/hydroxylase binding interactions is discussed.
机译:tamarii tamarii曲霉通过连续的四步酶促途径将黄体酮以高收率的方式将孕酮转化为睾丸内酯,该途径还具有灵活地转化一系列甾体底物的灵活性。这项研究调查了睾丸内酯和一系列完全饱和的甾族内酯类似物的进一步代谢。与睾丸内酯相反,后者即使在120 h孵育后也不会进一步代谢,内酯类似物进入了次要的羟基化途径。独特地,在形成3beta-hydroxy-17a-oxa-D-homo-5alpha-androstan-17-one(48小时)后,类固醇骨架上的4个不同位置被单羟基化(11beta,6beta,7beta,11alpha),这些位置与在甾体羟化酶中可能有四个结合位置(正常,反向,反向正常和反向反向)。这是第一个证明与单个生物体先前假设的单个分子有四种可能的类固醇/羟化酶结合相互作用的证据。另外,观察到罕见的1β-单羟基化,这可能表明脱水在番茄中产生1-烯官能团,而不是如人类和微生物中报道的脱氢。讨论了这些发现与类固醇/羟化酶结合相互作用的重要性。

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