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一些两栖动物光感受器的吸收光谱和线性二色性

Absorption spectra and linear dichroism of some amphibian photoreceptors.

作者信息

Hárosi F I

出版信息

J Gen Physiol. 1975 Sep;66(3):357-82. doi: 10.1085/jgp.66.3.357.

Abstract

Absorption spectra and linear dichroism of dark-adapted, isolated photoreceptors of mudpuppies, larval and adult tiger salamanders, and tropical toads were measured microspectrophotometrically. Spectral half-band width, dichroic ratio, and transverse specific density were determined using averaged polarized absorptance spectra and photomicrographs of seven types of rod outer segments. Two classes of cells were found, one with higher specific density and dichroic ratio, associable with the presence of rhodopsins, the other, lower in both quantities, associable with porphyropsins. Relationships were derived to calculate the product of molar concentration and extinction coefficient (CEmax) from specific density and dichroic ratio. By utilizing the hypothesis of invariance of oscillator strengths and measured half-band widths, Emax values were independently determined, permitting the calculation of C. The pigment concentration for all cells tested was about 3.5 mM. The broadness of green rod pigment spectra is correlated with reduced molar absorptivity and reduced cellular specific density. Estimation of physiological spectral sensitivities is discussed. Based on dichroic ratio considerations, a model is proposed for the orientation of retinals in situ which could account for the apparent degree of alignment of transition moments. In the chosen orientation, the ring portion of conjugation becomes primarily responsible for axial extinction. Reduced dichroism of dehydroretinal-bearing cells can thus result from the extended ring conjugation of chromophores. Some inferences derivable from the model are discussed.

摘要

用显微分光光度法测量了泥螈、幼虫和成年虎螈以及热带蟾蜍暗适应的分离光感受器的吸收光谱和线性二色性。使用七种类型视杆外段的平均偏振吸收光谱和显微照片,确定了光谱半带宽、二色性比和横向比密度。发现了两类细胞,一类具有较高的比密度和二色性比,与视紫红质的存在有关,另一类在这两个量上都较低,与视紫质有关。推导了从比密度和二色性比计算摩尔浓度与消光系数乘积(CEmax)的关系式。利用振子强度不变性和测量的半带宽的假设,独立确定了Emax值,从而可以计算C。所有测试细胞的色素浓度约为3.5 mM。绿视杆色素光谱的宽度与摩尔吸光率降低和细胞比密度降低相关。讨论了生理光谱敏感性的估计。基于二色性比的考虑,提出了一个视网膜原位取向的模型,该模型可以解释跃迁矩的明显排列程度。在选定的取向下,共轭环部分主要负责轴向消光。因此,含脱氢视黄醛细胞的二色性降低可能是由于发色团的环共轭延长所致。讨论了从该模型得出的一些推论。

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