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In silico description of cobalt and nickel assimilation systems in the genomes of methanogens

机译:产甲烷菌基因组中钴和镍同化系统的计算机模拟

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Methanogens are a diverse group of organisms that can live in a wide range of environments. Herein, cobalt and tungsten assimilation pathways have proposed to be established in the genomes of Methanococcus maripaludies C5 and Methanosarcina mazei Go1, respectively. All of the proteins involved in the proposed pathways were identified from public domain databases and then complied manually to reconstruct the pathways. The function of proteins with unknown function was assigned by a combined prediction approach. Totally, 17 proteins were identified to cobalt transport and assimilation processes whereas 7 proteins reported to tungsten assimilation system. Phylogenetic analysis of this study revealed that heavy metal transporter of methanogens could be evolved from closely related members in the different genera of methanogens. Nevertheless, genes encoding for metal resistance proteins could be originated from thermophilic and sulfur reducing bacteria. Many metalloenzymes in methanogens were very unique to the species of methanogens. It implied that these metal ions were utilized to produce the precursors for energy driven processes of methanogens. This study suggested that in combination of systems models and evolutionary inference can only correlate metabolic fluxes and physiological changes in methanogens. In silico models of this study will provide insights to design experiments for heavy metal assimilation processes of methanogens growing under heavy metal-rich environments and or in a laboratory condition.
机译:产甲烷菌是可以生活在各种环境中的多种生物。在此,已经提出在海产甲烷球菌C5和马氏甲烷球菌Go1的基因组中分别建立钴和钨的同化途径。拟议途径中涉及的所有蛋白质均已从公共领域数据库中鉴定出来,然后手动进行编译以重建途径。具有未知功能的蛋白质的功能通过组合预测方法分配。总共鉴定出17种蛋白质用于钴转运和同化过程,而7种蛋白质已报告给钨同化系统。这项研究的系统发育分析表明,产甲烷菌的重金属转运体可能是由产甲烷菌不同属的密切相关的成员进化而来的。然而,编码金属抗性蛋白的基因可能起源于嗜热和减少硫的细菌。产甲烷菌中的许多金属酶对于产甲烷菌而言非常独特。这暗示着这些金属离子被用来生产甲烷原的能量驱动过程的前体。这项研究表明,结合系统模型和进化推理只能将代谢通量和产甲烷菌的生理变化联系起来。这项研究的计算机模拟模型将为设计在富重金属环境和/或实验室条件下生长的产甲烷菌的重金属同化过程的设计实验提供见识。

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