首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Biotransformation of Hexahydro-135-Trinitro-135-Triazine (RDX) by a Rabbit Liver Cytochrome P450: Insight into the Mechanism of RDX Biodegradation by Rhodococcus sp. Strain DN22
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Biotransformation of Hexahydro-135-Trinitro-135-Triazine (RDX) by a Rabbit Liver Cytochrome P450: Insight into the Mechanism of RDX Biodegradation by Rhodococcus sp. Strain DN22

机译:兔肝细胞色素P450对六氢-135-三硝基-135-三嗪(RDX)的生物转化:深入研究Rhodococcus sp对RDX的生物降解机理。菌株DN22

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摘要

A unique metabolite with a molecular mass of 119 Da (C2H5N3O3) accumulated during biotransformation of hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX) by Rhodococcus sp. strain DN22 (D. Fournier, A. Halasz, J. C. Spain, P. Fiurasek, and J. Hawari, Appl. Environ. Microbiol. 68:166-172, 2002). The structure of the molecule and the reactions that led to its synthesis were not known. In the present study, we produced and purified the unknown metabolite by biotransformation of RDX with Rhodococcus sp. strain DN22 and identified the molecule as 4-nitro-2,4-diazabutanal using nuclear magnetic resonance and elemental analyses. Furthermore, we tested the hypothesis that a cytochrome P450 enzyme was responsible for RDX biotransformation by strain DN22. A cytochrome P450 2B4 from rabbit liver catalyzed a very similar biotransformation of RDX to 4-nitro-2,4-diazabutanal. Both the cytochrome P450 2B4 and intact cells of Rhodococcus sp. strain DN22 catalyzed the release of two nitrite ions from each reacted RDX molecule. A comparative study of cytochrome P450 2B4 and Rhodococcus sp. strain DN22 revealed substantial similarities in the product distribution and inhibition by cytochrome P450 inhibitors. The experimental evidence led us to propose that cytochrome P450 2B4 can catalyze two single electron transfers to RDX, thereby causing double denitration, which leads to spontaneous hydrolytic ring cleavage and decomposition to produce 4-nitro-2,4-diazabutanal. Our results provide strong evidence that a cytochrome P450 enzyme is the key enzyme responsible for RDX biotransformation by Rhodococcus sp. strain DN22.
机译:在六氢-1,3,5-三硝基-1,3,5-三嗪(RDX)被Rhodococcus sp。生物转化过程中积累的分子量为119 Da(C2H5N3O3)的独特代谢产物。菌株DN22(D.Fournier,A.Halasz,J.C.Spanish,P.Fiurasek和J.Hawari,Appl.Environ.Microbiol.68:166-172,2002)。分子的结构和导致其合成的反应尚不清楚。在本研究中,我们通过Rhodococcus sp。的RDX生物转化生产并纯化了未知的代谢物。菌株DN22,并使用核磁共振和元素分析将该分子鉴定为4-硝基-2,4-二氮杂丁醛。此外,我们测试了一种假设,即细胞色素P450酶负责菌株DN22的RDX生物转化。来自兔肝的细胞色素P450 2B4催化了RDX非常相似的生物转化为4-硝基-2,4-二氮杂丁醛。 Rhodococcus sp。的细胞色素P450 2B4和完整细胞。菌株DN22催化从每个反应的RDX分子释放两个亚硝酸根离子。细胞色素P450 2B4与红球菌sp。的比较研究。菌株DN22显示出产物分布和细胞色素P450抑制剂抑制作用的实质相似之处。实验证据促使我们提出,细胞色素P450 2B4可以催化向RDX的两个单电子转移,从而引起两次脱硝,从而导致自发的水解环裂解并分解生成4-硝基-2,4-二氮杂丁醛。我们的结果提供了有力的证据,表明细胞色素P450酶是红球菌属RDX进行生物转化的关键酶。菌株DN22。

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