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首页> 外文期刊>Marine Drugs >Microbial Degradation of Amino Acid-Containing Compounds Using the Microcystin-Degrading Bacterial Strain B-9
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Microbial Degradation of Amino Acid-Containing Compounds Using the Microcystin-Degrading Bacterial Strain B-9

机译:使用微囊藻毒素降解细菌菌株B-9对含氨基酸的化合物进行微生物降解

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Strain B-9, which has a 99% similarity to Sphingosinicella microcystinivorans strain Y2, is a Gram-negative bacterium with potential for use in the degradation of microcystin-related compounds and nodularin. We attempted to extend the application area of strain B-9 and applied it to mycotoxins produced by fungi. Among the tested mycotoxins, only ochratoxin A was completely hydrolyzed to provide the constituents ochratoxin α and l -phenylalanine, and levels of fumonisin B1 gradually decreased after 96 h. However, although drugs including antibiotics released into the aquatic environment were applied for microbial degradation using strain B-9, no degradation occurred. These results suggest that strain B-9 can only degrade amino acid-containing compounds. As expected, the tested compounds with amide and ester bonds, such as 3,4-dimethyl hippuric acid and 4-benzyl aspartate, were readily hydrolyzed by strain B-9, although the sulfonamides remained unchanged. The ester compounds were characteristically and rapidly hydrolyzed as soon as they came into contact with strain B-9. Furthermore, the degradation of amide and ester compounds with amino acids was not inhibited by the addition of ethylenediaminetetraacetic acid (EDTA), indicating that the responsible enzyme was not MlrC. These results suggest that strain B-9 possesses an additional hydrolytic enzyme that should be designated as MlrE, as well as an esterase.
机译:B-9菌株与微孢子菌鞘氨醇单胞菌Y2菌株具有99%的相似性,是革兰氏阴性细菌,具有用于降解与微囊藻毒素相关的化合物和结核菌素的潜力。我们试图扩大菌株B-9的应用范围,并将其应用于真菌产生的霉菌毒素。在测试的霉菌毒素中,只有曲霉毒素A完全水解以提供曲霉毒素α和1-苯丙氨酸的成分,而伏马毒素B1的水平在96小时后逐渐降低。但是,尽管使用释放到水生环境中的抗生素等药物使用菌株B-9进行了微生物降解,但并未发生降解。这些结果表明,菌株B-9只能降解含氨基酸的化合物。如所预期的那样,尽管磺酰胺保持不变,但是具有酰胺键和酯键的测试化合物,例如3,4-二甲基马尿酸和4-苄基天冬氨酸,很容易被菌株B-9水解。酯化合物与菌株B-9接触后,它们便会迅速被特征性地水解。此外,通过加入乙二胺四乙酸(EDTA)不会抑制酰胺和酯化合物与氨基酸的降解,这表明负责的酶不是MlrC。这些结果表明,菌株B-9具有应称为MlrE的另外的水解酶以及酯酶。

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