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模拟与视紫红质II形成相关的视杆细胞外段双折射变化。

Modeling the rod outer segment birefringence change correlated with metarhodopsin II formation.

作者信息

Kaplan M W

出版信息

Biophys J. 1982 Jun;38(3):237-41. doi: 10.1016/S0006-3495(82)84554-2.

Abstract

A rapid birefringence loss associated with metarhodopsin II formation, delta (delta n) MII, is produced when frog rod outer segments are exposed to a bleaching light flash. To analyze the nature of the underlying structure change, measurements of delta (delta n) MII were made in rod outer segments perfused with glycerol solutions to increase the refractive index of the cytoplasmic and intradisk spaces. Comparisons of experimental results with computed changes in the form birefringence component using two- and three-dielectric outer segment models for several putative structure changes were made. It is concluded that delta (delta n) MII can be due to either a change in the intrinsic birefringence component caused by the reorientation of anisotropic molecules, or to a change in the form birefringence component caused by small changes in the cytoplasmic and/or intradisk volumes.

摘要

当蛙类视杆细胞外段暴露于漂白光闪光时,会产生与视紫红质II形成相关的快速双折射损失,即δ(δn)MII。为了分析潜在结构变化的性质,在灌注甘油溶液的视杆细胞外段中测量了δ(δn)MII,以增加细胞质和盘内空间的折射率。使用二维和三维电介质外段模型,对几种假定结构变化的形式双折射分量的计算变化与实验结果进行了比较。得出的结论是,δ(δn)MII可能是由于各向异性分子重新定向引起的固有双折射分量的变化,或者是由于细胞质和/或盘内体积的微小变化引起的形式双折射分量的变化。

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Structure of photoreceptor membranes.
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