Delta Psi-Mediated signalling in the bacteriorhodopsin-dependent photoresponse

被引:14
作者
Grishanin, RN
Bibikov, SI
Altschuler, IM
Kaulen, AD
Kazimirchuk, SB
Armitage, JP
Skulachev, VP
机构
[1] UNIV OXFORD, DEPT BIOCHEM, MICROBIOL UNIT, OXFORD OX1 3QU, ENGLAND
[2] MOSCOW MV LOMONOSOV STATE UNIV, AN BELOZERSKY INST PHYSICOCHEM BIOL, MOSCOW 119899, RUSSIA
关键词
D O I
10.1128/jb.178.11.3008-3014.1996
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
It has been shown previously that the proton-pumping activity of bacteriorhodopsin from Halobacterium salinarium can transmit an attractant signal to the bacterial flagella upon an increase in light intensity over a wide range of wavelengths. Here, we studied the effect of blue light on phototactic responses by the mutant strain Pho81-B4, which lacks both sensory rhodopsins hut has the ability to synthesize bacteriorhodopsin, Under conditions in which bacteriorhodopsin was largely accumulated as the M(412) bacteriorhodopsin photo-cycle intermediate, halobacterial cells responded to blue light as a repellent. This response was pronounced when the membrane electric potential level mas high in the presence of arginine, active oxygen consumption, or high background long-wavelength light intensity but was inhibited by an uncoupler of oxidative phosphorylation (carbonyl cyanide 3-chlorophenylhydrazone) and was inverted in a background of low long-wavelength light intensity. The response to changes in the intensity of blue light under high background light was asymmetric, since removal of blue light did not produce an expected suppression of reversals. Addition of ammonium acetate, which is known to reduce the pH gradient changes across the membrane, did not inhibit the repellent effect of blue light, while the discharge of the membrane electric potential by tetraphenylphosphonium ions inhibited this sensory reaction. We conclude that the primary signal from bacteriorhodopsin to the sensory pathway involves changes in membrane potential.
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页码:3008 / 3014
页数:7
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