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Thermincola ferriacetica 阳极生物膜的 pH 值依赖性表明存在质子依赖型电化学响应。

pH Dependency in Anode Biofilms of Thermincola ferriacetica Suggests a Proton-Dependent Electrochemical Response.

机构信息

Swette Center for Environmental Biotechnology , The Biodesign Institute at Arizona State University , P.O. Box 875701, Tempe , Arizona 85287 , United States.

ScienceTheEarth , Mesa , Arizona 85201 , United States.

出版信息

J Am Chem Soc. 2018 Apr 25;140(16):5527-5534. doi: 10.1021/jacs.8b01734. Epub 2018 Apr 17.

Abstract

Monitoring the electrochemical response of anode respiring bacteria (ARB) helps elucidate the fundamental processes of anode respiration and their rate limitations. Understanding these limitations provides insights on how ARB create the complex interfacing of biochemical metabolic processes with insoluble electron acceptors and electronics. In this study, anode biofilms of the thermophilic (60 °C) Gram-positive ARB Thermincola ferriacetica were studied to determine the presence of a proton-dependent electron transfer response. The effects of pH, the presence of an electron donor (acetate), and biofilm growth were varied to determine their influence on the electrochemical midpoint potential ( E) and formal redox potential ( E°') under nonturnover conditions. The E and E°' are associated with an enzymatic process within ARB's metabolism that controls the rate and energetic state of their respiration. Results for all conditions indicate that pH was the major contributor to altering the energetics of T. ferriacetica anode biofilms. Electrochemical responses measured in the absence of an electron donor and with a minimal proton gradient within the anode biofilms resulted in a 48 ± 7 mV/pH unit shift in the E°', suggesting a proton-dependent rate-limiting process. Given the limited energy available for anode respiration (<200 mV when using acetate as electron donor), our results provide a new perspective in understanding proton-transport limitations in ARB biofilms, one in which ARB are thermodynamically limited by pH gradients. Since the anode biofilms of all ARB that perform direct extracellular electron transfer (EET) investigated thus far exhibit an n = 1 Nernstian behavior, and because this behavior is affected by changes in pH, we hypothesize that the Nernstian response is associated with membrane proteins responsible for proton translocation. Finally, this study shows that the E and E°' are a function of pH within the physiological range of ARB, and thus, given the significant effect pH has on this parameter, we recommend reporting the E and E°' of ARB biofilms at a specific bulk pH.

摘要

监测阳极呼吸细菌 (ARB) 的电化学响应有助于阐明阳极呼吸的基本过程及其限速机制。了解这些限制因素可以深入了解 ARB 如何将生化代谢过程与不溶性电子受体和电子进行复杂的界面连接。在这项研究中,研究了嗜热 (60°C) 革兰氏阳性 ARB Thermincola ferriacetica 的阳极生物膜,以确定是否存在质子依赖的电子转移响应。改变 pH 值、电子供体 (乙酸盐) 的存在以及生物膜的生长,以确定它们对非周转条件下电化学中点电位 ( E) 和形式氧化还原电位 ( E°') 的影响。E 和 E°'与 ARB 代谢中控制其呼吸速率和能量状态的酶促过程有关。所有条件下的结果表明,pH 值是改变 T. ferriacetica 阳极生物膜能量学的主要因素。在没有电子供体且阳极生物膜内质子梯度最小的情况下测量的电化学响应导致 E°'发生 48 ± 7 mV/pH 单位的偏移,表明存在质子依赖的限速过程。鉴于阳极呼吸可用的能量有限 (<200 mV 时使用乙酸盐作为电子供体),我们的结果提供了一种新的视角来理解 ARB 生物膜中的质子传输限制,其中 ARB 受到 pH 梯度的热力学限制。由于迄今为止研究的所有进行直接细胞外电子转移 (EET) 的 ARB 的阳极生物膜都表现出 n = 1 能斯特行为,并且这种行为受到 pH 值变化的影响,因此我们假设能斯特响应与负责质子转运的膜蛋白有关。最后,本研究表明,E 和 E°'是 ARB 生理范围内 pH 的函数,因此,鉴于 pH 对该参数有重大影响,我们建议在特定的总 pH 值下报告 ARB 生物膜的 E 和 E°'。

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