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含细菌视紫红质的膜片段光诱导质子释放的量子产率。

The quantum yield of flash-induced proton release by bacteriorhodopsin-containing membrane fragments.

作者信息

Ort D R, Parson W W

出版信息

Biophys J. 1979 Feb;25(2 Pt 1):341-53. doi: 10.1016/s0006-3495(79)85296-0.

Abstract

The quantum yield of proton release by bacteriorhodopsin was measured from volume changes after excitation of purple membrane fragments by short flashes. At low ionic strengths, about 0.25 mol of protons is released per einstein absorbed. This agrees well with quantum yields reported recently for the conversion of bacteriorhodopsin into a metastable state (M) that absorbs near 412 nm. However, the quantum yield of proton release increases gradually with increasing ionic strength; it plateaus with a value of 0.43 +/- 0.03 at ionic strengths above 200 mM. Changing the ionic strength has no detectable effect on the quantum yield of formation of the M spectral state. It thus appears that as many as two protons can be released and rebound in each photochemical cycle at high ionic strengths. The quantum yield of proton release is essentially independent of pH over the range 6.0-8.75. The quantum yield decreases with increasing flash strength, apparently due to photoreversal of the initial photochemical reaction.

摘要

通过短脉冲激发紫色膜片段后,根据体积变化测量了细菌视紫红质释放质子的量子产率。在低离子强度下,每吸收一爱因斯坦的光,约释放0.25摩尔质子。这与最近报道的细菌视紫红质转化为在412nm附近吸收的亚稳态(M)的量子产率非常吻合。然而,质子释放的量子产率随着离子强度的增加而逐渐增加;在离子强度高于200mM时,它趋于稳定,值为0.43±0.03。改变离子强度对M光谱态形成的量子产率没有可检测到的影响。因此,在高离子强度下,每个光化学循环中似乎可以释放多达两个质子并反弹。质子释放的量子产率在6.0 - 8.75范围内基本与pH无关。量子产率随着闪光强度的增加而降低,这显然是由于初始光化学反应的光逆转。

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