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BACTERIORHODOPSIN MUTANTS D85N, D85T AND D85,96N AS PROTON PUMPS

机译:细菌视紫红质突变体D85N,D85T和D85,96N作为质子泵

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Proton translocation in the BR mutants D85N, D85T and D85,96N was studied by attachment of purple membranes to planar lipid bilayers. Pump currents in these mutants were measured via capacitive coupling and by use of the appropriate ionophores. All mutants have a reduced pK of their Schiff bases around 8-8.5 in common. At physiological pH, a mixture of chromophores absorbing at 410 nm (deprotonated form) and around 600 nm (protonated form) coexists. Excitation with continuous blue light induces in all three mutants an outwardly directed stationary pump current. These currents are enhanced upon addition of azide in D85N and D85,96N by a factor of 50, but no azide enhancement is observed in D85T. Yellow light alone induces transient inwardly directed currents in the mutants but additional blue light leads to a stationary current with the same direction. All the observed currents are carried by protons, so that the consecutive absorption of a yellow and a blue photon leads to inverted stationary photocurrents by the mutants, as observed with halorhodopsin (HR). A mechanistic model describing the inversion of proton pumping is discussed by the cis-trans, trans-cis isomerization of the retinal and the different proton accessibility of the Schiff base from the extracellular or the cytoplasmic side of the membrane. [References: 14]
机译:通过将紫色膜附着在平面脂质双层上,研究了BR突变体D85N,D85T和D85,96N中的质子移位。这些突变体中的泵浦电流通过电容耦合和使用适当的离子载体进行测量。所有突变体的Schiff碱基的pK值通常都在8-8.5左右。在生理pH下,共存有在410 nm(去质子化形式)和大约600 nm(质子化形式)吸收的生色团混合物。用连续的蓝光激发在所有三个突变体中诱导向外定向的静止泵浦电流。在D85N和D85,96N中添加叠氮化物后,这些电流增加了50倍,但在D85T中未观察到叠氮化物增强。单独的黄光会在突变体中感应出瞬态的向内定向电流,但是额外的蓝光会导致方向相同的稳定电流。所有观察到的电流都由质子携带,因此黄色和蓝色光子的连续吸收会导致突变体产生反向的固定光电流,如用视紫红质(HR)观察到的那样。通过视网膜的顺-反,反-顺式异构化以及席夫碱从膜的细胞外或细胞质侧的不同质子可及性,讨论了描述质子泵倒置的机理模型。 [参考:14]

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