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嗜热厌氧细菌热纤维梭菌中的能量转导仅与钠离子耦合。

Energy transduction in the thermophilic anaerobic bacterium Clostridium fervidus is exclusively coupled to sodium ions.

作者信息

Speelmans G, Poolman B, Abee T, Konings W N

机构信息

Department of Microbiology, University of Groningen, Haren, The Netherlands.

出版信息

Proc Natl Acad Sci U S A. 1993 Sep 1;90(17):7975-9. doi: 10.1073/pnas.90.17.7975.

Abstract

The thermophilic, peptidolytic, anaerobic bacterium Clostridium fervidus is unable to generate a pH gradient in the range of 5.5-8.0, which limits growth of the organism to a narrow pH range (6.3-7.7). A significant membrane potential (delta psi approximately -60 mV) and chemical gradient of Na+ (-Z delta pNa approximately -60 mV) are formed in the presence of metabolizable substrates. Energy-dependent Na+ efflux is inhibited by the Na+/H+ ionophore monensin but is stimulated by uncouplers, suggesting that the Na+ gradient is formed by a primary pumping mechanism rather than by secondary Na+/H+ antiport. This primary sodium pump was found to be an ATPase that has been characterized in inside-out membrane vesicles and in proteoliposomes in which solubilized ATPase was reconstituted. The enzyme is stimulated by Na+, resistant to vanadate, and sensitive to nitrate, which is indicative of an F/V-type Na(+)-ATPase. In the proteoliposomes Na+ accumulation depends on the presence of ATP, is inhibited by the ATPase inhibitor nitrate, and is completely prevented by the ionophore monensin but is stimulated by protonophores and valinomycin. These and previous observations, which indicated that secondary amino acid transport uses solely Na+ as coupling ion, demonstrate that energy transduction at the membrane in C. fervidus is exclusively dependent on a Na+ cycle.

摘要

嗜热、肽解、厌氧细菌热纤维梭菌在5.5 - 8.0的pH范围内无法产生pH梯度,这将该生物体的生长限制在狭窄的pH范围(6.3 - 7.7)内。在存在可代谢底物的情况下,会形成显著的膜电位(Δψ约为 -60 mV)和Na⁺的化学梯度(-ZΔpNa约为 -60 mV)。能量依赖性的Na⁺外流受到Na⁺/H⁺离子载体莫能菌素的抑制,但受到解偶联剂的刺激,这表明Na⁺梯度是由初级泵机制形成的,而不是由次级Na⁺/H⁺反向转运形成的。这种初级钠泵被发现是一种ATP酶,已在内外翻转的膜囊泡和重组了溶解的ATP酶的蛋白脂质体中进行了表征。该酶受到Na⁺的刺激,对钒酸盐有抗性,对硝酸盐敏感,这表明它是一种F/V型Na⁺-ATP酶。在蛋白脂质体中,Na⁺的积累依赖于ATP的存在,受到ATP酶抑制剂硝酸盐的抑制,并被离子载体莫能菌素完全阻止,但受到质子载体和缬氨霉素的刺激。这些以及先前的观察结果表明,次级氨基酸转运仅使用Na⁺作为偶联离子,这证明热纤维梭菌膜上的能量转导完全依赖于Na⁺循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b76/47270/d3163a1e8d29/pnas01474-0077-a.jpg

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