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Biodegradation of 3-Nitrotyrosine by Burkholderia sp. Strain JS165 and Variovorax paradoxus JS171

机译:Burkholderia sp。对3-硝基酪氨酸的生物降解。菌株JS165和Variovorax paradoxus JS171

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摘要

The cascade of reactive nitrogen species generated from nitric oxide causes modification of proteins, lipids, and nucleic acids in a wide range of organisms. 3-Nitrotyrosine is one of the most common products of the action of reactive nitrogen species on proteins. Although a great deal is known about the formation of 3-nitrotyrosine, the subsequent metabolism of this compound is a mystery. Variovorax paradoxus JS171 and Burkholderia sp. strain JS165 were isolated from soil slurries when 3-nitrotyrosine was provided as the sole carbon, nitrogen, and energy source. During growth on 3-nitrotyrosine stoichiometric amounts of nitrite were released along with approximately one-half of the theoretically available ammonia. The catabolic pathway involving oxidative denitration is distinct from the pathway for tyrosine metabolism. The facile isolation and the specific, regulated pathway for 3-nitrotyrosine degradation in natural ecosystems suggest that there is a significant flux of 3-nitrotyrosine in such environments.
机译:一氧化氮产生的反应性氮物种的级联会导致多种生物体中蛋白质,脂质和核酸的修饰。 3-硝基酪氨酸是活性氮对蛋白质起作用的最常见产物之一。尽管人们对3-硝基酪氨酸的形成了解很多,但该化合物的后续代谢仍是一个谜。 Variovorax paradoxus JS171和Burkholderia sp。当提供3-硝基酪氨酸作为唯一的碳,氮和能源时,从土壤泥浆中分离出JS165菌株。在3-硝基酪氨酸上生长期间,化学计算量的亚硝酸盐与大约一半的理论上可用的氨一起释放。涉及氧化脱硝的分解代谢途径不同于酪氨酸代谢途径。在自然生态系统中,3-硝基酪氨酸降解的简便隔离和特定的受调控途径表明,在此类环境中存在大量的3-硝基酪氨酸通量。

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