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抗生素对紫膜悬浮液光循环和质子循环的影响。

The effect of antibiotics on the photocycle and protoncycle of purple membrane suspensions.

作者信息

Avi-Dor Y, Rott R, Schnaiderman R

出版信息

Biochim Biophys Acta. 1979 Jan 11;545(1):15-23. doi: 10.1016/0005-2728(79)90109-9.

Abstract

The interrelation was studied between the phototransient absorbing maximally at 412 nm (M412) and light-induced proton release under steady-state conditions in aqueous suspensions of 'purple membrane' derived from Halobacterium halobium. The decay of M412 was slowed down by the simultaneous application of the ionophoric antibiotics valinomycin and beauvericin. The former had only slight activity alone and the latter was effective only in conjunction with valinomycin. The steady-state concentration of M412 which was formed on illumination was a direct function of the concentration of valinomycin. Maximum stabilization of M412 was obtained when the valinomycin was approximately equimolar with the bacteriorhodopsin. Addition of salts to the medium increased the number of protons released per molecule of M412 without affecting the level of M412 which was produced by continuous illumination. The effectiveness of the salts in this respect depended on the nature of the cation. Ca2+ and their antagonists La3+ and ruthenium red were found to have especially high affinity for the system. The extent of light-induced acidification could not be enhanced by increasing the pH of the medium from 6.5 to 7.8. The possible mechanism of action of the ionophores and of the cations on the photocycle and on the proton cycle is discussed.

摘要

对源自嗜盐菌的“紫膜”水悬浮液在稳态条件下最大吸收波长为412nm的光瞬变(M412)与光诱导质子释放之间的相互关系进行了研究。同时应用离子载体抗生素缬氨霉素和白僵菌素会减缓M412的衰减。前者单独作用时活性微弱,后者仅与缬氨霉素联合使用时才有效。光照时形成的M412稳态浓度是缬氨霉素浓度的直接函数。当缬氨霉素与细菌视紫红质近似等摩尔时,可实现M412的最大稳定化。向培养基中添加盐会增加每分子M412释放的质子数,而不影响连续光照产生的M412水平。盐在这方面的有效性取决于阳离子的性质。发现Ca2+及其拮抗剂La3+和钌红对该系统具有特别高的亲和力。将培养基的pH从6.5提高到7.8并不能增强光诱导酸化的程度。讨论了离子载体和阳离子对光循环和质子循环的可能作用机制。

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