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Status quo in physiological proteomics of the uncultured Riftia pachyptila endosymbiont.

机译:未经培养的裂谷内生菌的生理蛋白质组学现状。

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Riftia pachyptila, the giant deep-sea tube worm, inhabits hydrothermal vents in the Eastern Pacific ocean. The worms are nourished by a dense population of chemoautotrophic bacterial endosymbionts. Using the energy derived from sulfide oxidation, the symbionts fix CO(2) and produce organic carbon, which provides the nutrition of the host. Although the endosymbionts have never been cultured, cultivation-independent techniques based on density gradient centrifugation and the sequencing of their (meta-) genome enabled a detailed physiological examination on the proteomic level. In this study, the Riftia symbionts' soluble proteome map was extended to a total of 493 identified proteins, which allowed for an explicit description of vital metabolic processes such as the energy-generating sulfide oxidation pathway or the Calvin cycle, which seems to involve a reversible pyrophosphate-dependent phosphofructokinase. Furthermore, the proteomic view supports the hypothesis that the symbiont uses nitrate as an alternative electron acceptor. Finally, the membrane-associated proteome of the Riftia symbiont was selectively enriched and analyzed. As a result, 275 additional proteins were identified, most of which have putative functions in electron transfer, transport processes, secretion, signal transduction and other cell surface-related functions. Integrating this information into complex pathway models a comprehensive survey of the symbiotic physiology was established.
机译:巨大的深海管状蠕虫“裂谷”(Riftia pachyptila)栖息在东太平洋的热液喷口中。这些蠕虫被大量的化学自养细菌内共生菌滋养。共轭物利用硫化物氧化产生的能量固定CO(2)并产生有机碳,从而提供宿主的营养。尽管从未培养过共生共生体,但基于密度梯度离心及其(元)基因组测序的与培养无关的技术可以在蛋白质组学水平上进行详细的生理学检查。在这项研究中,裂谷菌共生体的可溶性蛋白质组图谱扩展到总共493种已鉴定的蛋白质,从而可以明确描述重要的代谢过程,例如产生能量的硫化物氧化途径或加尔文循环,其中似乎涉及一个可逆焦磷酸盐依赖性磷酸果糖激酶。此外,蛋白质组学观点支持共生体使用硝酸盐作为替代电子受体的假设。最后,有选择地富集和分析了裂谷共生体的膜相关蛋白质组。结果,鉴定出另外275种蛋白质,其中大多数具有推定的功能,涉及电子转移,转运过程,分泌,信号转导和其他与细胞表面相关的功能。将这些信息整合到复杂的途径模型中,建立了对共生生理的全面调查。

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