...
首页> 外文期刊>Applied Microbiology and Biotechnology >Biotransformation and reduction of estrogenicity of bisphenol A by the biphenyl-degrading Cupriavidus basilensis
【24h】

Biotransformation and reduction of estrogenicity of bisphenol A by the biphenyl-degrading Cupriavidus basilensis

机译:双苯基降解的Bisphenol A的生物转化和降低双酚A的雌激素

获取原文
获取原文并翻译 | 示例

摘要

The biphenyl-degrading Gram-negative bacterium Cupriavidus basilensis (formerly Ralstonia sp.) SBUG 290 uses various aromatic compounds as carbon and energy sources and has a high capacity to transform bisphenol A (BPA), which is a hormonally active substance structurally related to biphenyl. Biphenyl-grown cells initially hydroxylated BPA and converted it to four additional products by using three different transformation pathways: (a) formation of multiple hydroxylated BPA, (b) ring fission, and (c) transamination followed by acetylation or dimerization. Products of the ring fission pathway were non-toxic and all five products exhibited a significantly reduced estrogenic activity compared to BPA. Cell cultivation with phenol and especially in nutrient broth (NB) resulted in a reduced biotransformation rate and lower product quantities, and NB-grown cells did not produce all five products in detectable amounts. Thus, the question arose whether enzymes of the biphenyl degradation pathway are involved in the transformation of BPA and was addressed by proteomic analyses.
机译:联苯降解革兰氏阴性菌(以前是Ralstonia Sp.)Sbug 290使用各种芳族化合物作为碳和能源,并且具有高容量转化双酚A(BPA),其是与联苯结构的激素活性物质。 。联苯生长的细胞最初羟基化的BPA并通过使用三种不同的转化途径将其转化为四种另外的产物:(a)形成多个羟基化的BPA,(b)环裂缝,(c)崩解,然后进行乙酰化或二聚化。环裂变途径的产品无毒,与BPA相比,所有五种产品都表现出显着降低的雌激素活性。用苯酚细胞培养,特别是在营养肉汤(NB)中产生降低的生物转化率和较低的产品量,并且Nb生长的细胞在可检测量中不会产生所有五种产物。因此,问题出现了联苯降解途径的酶是否参与BPA的转化,并通过蛋白质组学分析解决。

著录项

  • 来源
  • 作者单位

    Ernst Moritz Arndt Univ Greifswald Inst Microbiol Friedrich Ludwig Jahn Str 15 D-17487 Greifswald Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Microbiol Friedrich Ludwig Jahn Str 15 D-17487 Greifswald Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Microbiol Friedrich Ludwig Jahn Str 15 D-17487 Greifswald Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Microbiol Friedrich Ludwig Jahn Str 15 D-17487 Greifswald Germany;

    Leibniz Inst Plant Genet &

    Crop Plant Res Corrensstr 3 D-06466 Ot Gatersleben Seeland Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Microbiol Friedrich Ludwig Jahn Str 15 D-17487 Greifswald Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Microbiol Friedrich Ludwig Jahn Str 15 D-17487 Greifswald Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Microbiol Friedrich Ludwig Jahn Str 15 D-17487 Greifswald Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Microbiol Friedrich Ludwig Jahn Str 15 D-17487 Greifswald Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Biochem Felix Hausdorff Str 4 D-17487 Greifswald Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Biochem Felix Hausdorff Str 4 D-17487 Greifswald Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Microbiol Friedrich Ludwig Jahn Str 15 D-17487 Greifswald Germany;

    Leibniz Inst Plant Genet &

    Crop Plant Res Corrensstr 3 D-06466 Ot Gatersleben Seeland Germany;

    Ernst Moritz Arndt Univ Greifswald Inst Microbiol Friedrich Ludwig Jahn Str 15 D-17487 Greifswald Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用微生物学 ; 生物工程学(生物技术) ;
  • 关键词

    Bisphenol A; Biotransformation; Cupriavidus basilensis; Estrogenicity; Ring cleavage; Proteome;

    机译:双酚A;生物转化;巨毛巨大;雌激素;雌激素;环裂解;蛋白质组;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号