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嗜碱芽孢杆菌Na⁺/H⁺逆向转运蛋白的体内特性:全细胞中依赖膜电位的²²Na⁺外流

Characterization of the Na+/H+ antiporter of alkalophilic bacilli in vivo: delta psi-dependent 22Na+ efflux from whole cells.

作者信息

Garcia M L, Guffanti A A, Krulwich T A

出版信息

J Bacteriol. 1983 Dec;156(3):1151-7. doi: 10.1128/jb.156.3.1151-1157.1983.

Abstract

The Na+/H+ antiporter of Bacillus alcalophilus was studied by measuring 22Na+ efflux from starved, cyanide-inhibited cells which were energized by means of a valinomycin-induced potassium diffusion potential, positive out (delta psi). In the absence of a delta psi, 22Na+ efflux at pH 9.0 was slow and appreciably inhibited by N-ethylmaleimide. Upon imposition of a delta psi, a very rapid rate of 22Na+ efflux occurred. This rapid rate of 22Na+ efflux was competitively inhibited by Li+ and varied directly with the magnitude of the delta psi. Kinetic experiments with B. alcalophilus and alkalophilic Bacillus firmus RAB indicated that the delta psi caused a pronounced increase in the Vmax for 22Na+ efflux. The Km values for Na+ were unaffected by the delta psi. Upon imposition of a delta psi at pH 7.0, a retardation of the slow 22Na+ efflux rate at pH 7.0 was caused by the delta psi. This showed that inactivity of the Na+/H+ antiporter at pH 7.0 was not secondary to a low delta psi generated by respiration at this pH. Indeed, 22Na+ efflux activity appeared to be inhibited by a relatively high internal proton concentration. By contrast, at a constant internal pH, there was little variation in the activity at external pH values from 7.0 to 9.0; at an external pH of 10.0, the rate of 22Na+ efflux declined. This decline at typical pH values for growth may be due to an insufficiency of protons when a diffusion potential rather than respiration is the driving force. Non-alkalophilic mutant strains of B. alcalophilus and B. firmus RAB exhibited a slow rate of 22Na+ efflux which was not enhanced by a delta psi at either pH 7.0 or 9.0.

摘要

通过测量经缬氨霉素诱导的钾离子扩散电位(外正内负,Δψ)供能的饥饿、氰化物抑制细胞的²²Na⁺外流,对嗜碱芽孢杆菌的Na⁺/H⁺逆向转运蛋白进行了研究。在没有Δψ的情况下,pH 9.0时的²²Na⁺外流缓慢,且明显受到N-乙基马来酰亚胺的抑制。施加Δψ后,²²Na⁺外流速率非常快。这种快速的²²Na⁺外流速率受到Li⁺的竞争性抑制,并与Δψ的大小直接相关。对嗜碱芽孢杆菌和嗜碱坚强芽孢杆菌RAB进行的动力学实验表明,Δψ导致²²Na⁺外流的Vmax显著增加。Na⁺的Km值不受Δψ的影响。在pH 7.0时施加Δψ,会导致pH 7.0时缓慢的²²Na⁺外流速率减慢。这表明pH 7.0时Na⁺/H⁺逆向转运蛋白的无活性并非继发于该pH下呼吸作用产生的低Δψ。实际上,²²Na⁺外流活性似乎受到相对较高的内部质子浓度的抑制。相比之下,在内部pH恒定的情况下,外部pH值从7.0到9.0时活性变化不大;在外部pH为10.0时,²²Na⁺外流速率下降。在典型的生长pH值下这种下降可能是由于扩散电位而非呼吸作用作为驱动力时质子不足所致。嗜碱芽孢杆菌和坚强芽孢杆菌RAB的非嗜碱突变株表现出缓慢的²²Na⁺外流速率,在pH 7.0或9.0时均不会因Δψ而加快。

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