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Metabolic response against sulfur-containing heterocyclic compounds by the lignin-degrading basidiomycete Coriolus versicolor

机译:木质素降解担架菌云芝对含硫杂环化合物的代谢反应

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The fungal conversions of sulfur-containing heterocyclic compounds were investigated using the lignin-degrading basidiomycete Coriolcus versicolor. The fungus metabolized a series of sulfur compounds 25 structurally related thiophene derivatives - via several different pathways. Under primary metabolic conditions, C. versicolor utilized thiophenes, such as 2-hydroxy-methyl-, 2-formyl-, and 2-carboxyl-thiophenes, as a nutrient sulfur source for growth; thus, the fungus degraded these compounds more effectively in a non-sulfur-containing medium than in conventional medium. The product analysis revealed that several redox reactions, decarboxylation reactions, and C-S cleavage reactions were involved in the fungal conversion of non-aromatic thiophenes. On the other hand, benzothiophene (BT) and dibenzothiophene (DBT) skeletons were converted to water-soluble products. All the products and metabolic intermediates were more hydrophilic than the starting substrates. These metabolic actions seemed to be a chemical stress response against exogenously added xenobiotics. These metabolic reactions were optimized under ligninolytic conditions, also suggesting the occurrence of a fungal xenobiotic response. Furthermore, the fungus converted a series of BTs and DBTs via several different pathways, which seemed to be controlled by the chemical structure of the substrates. DBT, 4-methylDBT, 4, 6-dimethylDBT, 2-methylBT, and 7-methylBT were immediately oxidized to their S-oxides. BTs and DBTs with the hydroxymethyl substituent were converted to their xylosides without S-oxidation. Those with carboxyl and formyl substituents were reduced to form a hydroxymethyl group, then xylosidated. These observations strongly suggested the involvement of a fungal substrate-recognition and metabolic response mechanism in the metabolism of sulfur-containing heterocyclic compounds by C. versicolor. [References: 33]
机译:使用木质素降解的担子菌Coriolcus versicolor研究了含硫杂环化合物的真菌转化。真菌通过几种不同的途径代谢了一系列硫化合物,这些硫化合物是25种与结构相关的噻吩衍生物。在主要代谢条件下,杂色衣藻利用噻吩(例如2-羟基-甲基-,2-甲酰基-和2-羧基-噻吩)作为生长的营养硫源。因此,这种真菌在不含硫的培养基中比常规培养基更有效地降解了这些化合物。产物分析表明,一些氧化还原反应,脱羧反应和C-S裂解反应与非芳族噻吩的真菌转化有关。另一方面,苯并噻吩(BT)和二苯并噻吩(DBT)骨架被转化为水溶性产物。所有产物和代谢中间体均比起始底物更亲水。这些代谢作用似乎是针对外源添加的异种生物的化学应激反应。这些代谢反应在木质素分解条件下进行了优化,也暗示了真菌异源生物反应的发生。此外,真菌通过几种不同的途径转化了一系列的BT和DBT,这似乎受底物的化学结构控制。 DBT,4-甲基DBT,4、6-二甲基DBT,2-甲基BT和7-甲基BT立即被氧化成它们的S-氧化物。具有羟甲基取代基的BT和DBT无需S氧化即可转化为其木糖苷。具有羧基和甲酰基取代基的那些被还原形成羟甲基,然后被木糖基化。这些观察结果强烈提示真菌底物识别和代谢反应机制参与了杂色衣藻对含硫杂环化合物的代谢。 [参考:33]

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