首页> 外文期刊>Soil Biology & Biochemistry >Enzymatic transformation of humic substances by NDO.
【24h】

Enzymatic transformation of humic substances by NDO.

机译:NDO对腐殖质的酶促转化。

获取原文
获取原文并翻译 | 示例
           

摘要

Enzymatic transformation of humic acids (HA), fulvic acids (FA) and indole was examined using naphthalene 1,2-dioxygenase (NDO). NDO was used as a model for dioxygenase enzymes found in various microbial species. Indole was used as a model substrate for NDO-catalyzed reactions resulting in condensation products. Although NDO is not classified as a soil enzyme, all HA and FA tested were susceptible to NDO-induced transformation. The extent of NDO-specific NADH oxidation in solutions containing HA and FA paralleled the percent aromaticity of the HA and FA. Furthermore, the UV-Vis absorptive properties of NDO-treated HA and FA were altered in a manner suggesting condensation reactions similar to the formation of indigo from indole. Condensation reactions were enhanced in NDO-treated mixtures containing indole and an FA. NDO retained activity for 2 weeks under ambient conditions, and retained some enzymatic activity for 9 days based on detection of specific metabolites by HPLC, suggesting prolonged extracellular activity. Humic substances have not previously been known to be substrates for dioxygenases; even more significant was that dioxygenase enzymes can facilitate condensation reactions between indole-like functional groups well-known to be present in HA and FA. These results illustrate how dioxygenases can be potential humic-modifying enzymes when released into the environment upon microbial death and concurrent cell lysis which could alter the bioavailability of organic contaminants associated with dissolved organic matter through specific modulation of enzyme activity involving substrate competition.
机译:使用萘1,2-二加氧酶(NDO)检查了腐殖酸(HA),富里酸(FA)和吲哚的酶促转化。 NDO被用作各种微生物中发现的双加氧酶的模型。吲哚用作NDO催化反应的缩合产物的模型底物。尽管NDO未被归类为土壤酶,但所有测试的HA和FA均易受NDO诱导的转化的影响。在含有HA和FA的溶液中,NDO特异性NADH的氧化程度与HA和FA的芳香度百分比平行。此外,NDO处理的HA和FA的UV-Vis吸收性能发生了改变,暗示了缩合反应类似于由吲哚形成靛蓝。在含有吲哚和FA的NDO处理的混合物中,缩合反应得以增强。 NDO在环境条件下可保留活性2周,而根据HPLC检测到的特定代谢产物,其酶活性可保留9天,表明细胞外活性延长。以前还不知道腐殖质是双加氧酶的底物。更重要的是,双加氧酶可以促进众所周知的HA和FA中存在的吲哚样功能基之间的缩合反应。这些结果说明了双加氧酶在微生物死亡和同时发生的细胞裂解后释放到环境中时,如何可能成为潜在的腐殖质修饰酶,它们可以通过涉及底物竞争的酶活性的特异性调节来改变与溶解的有机物相关的有机污染物的生物利用度。

著录项

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