课题基金 / 基金详情

Biosynthesis of 7-Mercaptoheptanylthreonine-phosphate and the Methyl Reducing Factor in Mehtanogenic Bacteria

Biosynthesis of 7-Mercaptoheptanylthreonine-phosphate and the Methyl Reducing Factor in Mehtanogenic Bacteria
产甲烷细菌中 7-巯基庚基苏氨酸磷酸和甲基还原因子的生物合成
批准号:
9311538
负责人:
Robert White
金额:
$21.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
1994
资助国家:
美国
项目状态:
已结题
起止时间:
1994-02-01 至 1998-01-31

项目摘要

项目成果

Robert White的其他基金

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中文摘要
翻译
白色9311538在本项目中,将建立产甲烷辅酶7-巯基庚基苏氨酸磷酸(HS-HTP)和甲基还原辅因子(MRF)的生物合成途径。 第一阶段的工作将是建立HS-HTP和MRF在不同种类的产甲烷古细菌中的存在,并确定这些辅酶之间任何可能的前体/产物关系。 分子的存在和相互转化将确定其monobromobimane衍生物的荧光测量使用最近开发的程序由作者。 将测定单个亚基和亚基分子组掺入HS-HTP和MRF中的情况。 将进行体内和体外实验,使用稳定的同位素标记分子和质谱法测量掺入,以帮助确定生物合成途径。 由产甲烷古细菌将二氧化碳代谢还原为甲烷的生物化学代表了微生物代谢的一个令人兴奋的领域。 这种代谢的一个重要方面是发现了七种新的辅酶。 许多 甲烷途径中的辅酶具有与其它熟知的辅酶和维生素完全不同的化学结构。 正因为如此,每一个结构都代表着一种新的生物化合物,具有有待发现的不寻常功能。 在这个奖项中,生物合成,结构,并在有限的程度上,两个辅因子,7-巯基庚基苏氨酸磷酸和甲基还原辅因子的分布,将被探索。 要解决的具体问题是,这些辅因子是如何生物合成和组装,它们是生物合成相互关联的? 这些问题的答案可能会完成另一章在我们的理解的生物合成的产甲烷辅酶,也揭示了更多的微生物生物化学形成的甲烷,一个重要的能源。 ***
英文摘要
White 9311538 In this project, the biosynthetic pathway(s) for the methanogenic coenzymes 7-mercaptoheptanylthreonine-phosphate (HS-HTP) and methyl reducing cofactor (MRF) will be established. The first phase of work will be to establish the presence of HS-HTP and MRF in different species of methanogenic archaebacteria and to determine any possible precursor/product relationship between these coenzymes. The presence and interconversion of the molecules will be determined by fluorescence measurement of their monobromobimane derivatives using procedures recently developed by the author. The incorporation of individual subunit and groups of subunit molecules into HS-HTP and MRF will be determined. Both in vivo and in vitro experiments, using stable isotopically-labeled molecules and mass spectrometry to measure incorporation, will be performed to help define the biosynthetic pathways. %%% The biochemistry of the metabolic reduction of carbon dioxide to methane by the methanogenic archaebacteria represents an exciting area of microbiological metabolism. One important aspect of this metabolism is the discovery of seven new coenzymes. Many of the coenzymes in the methane pathway have chemical structures completely different from other well known coenzymes and vitamins. Because of this each structure represents a new biological compound with unusual functions to be discovered. In this award, the biosynthesis, structure, and to a limited extent, the distribution of two cofactors, 7-mercaptoheptanylthreonine-phosphate and methyl reducing cofactor, will be explored. Specific questions to be addressed are; how are each of these cofactors biosynthesized and assembled, and are they biosynthetically interrelated? Answers to these questions may complete another chapter in our understanding of the biosynthesis of the methanogenic coenzymes, and also shed more light on the microbial biochemistry of the formation of methane, an important energy source. ***
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