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A Simplified Mass-Transfer Model for Visual Pigments in Amphibian Retinal-Cone Outer Segments

机译:两栖类视网膜锥体外节视觉色素的简化传质模型

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摘要

When radiolabeled precursors and autoradiography are used to investigate turnover of protein components in photoreceptive cone outer segments (COSs), the labeled components—primarily visual pigment molecules (opsins)—are diffusely distributed along the COS. To further assess this COS labeling pattern, we derive a simplified mass-transfer model for quantifying the contributions of advective and diffusive mechanisms to the distribution of opsins within COSs of the frog retina. Two opsin-containing regions of the COS are evaluated: the core axial array of disks and the plasmalemma. Numerical solutions of the mass-transfer model indicate three distinct stages of system evolution. In the first stage, plasmalemma diffusion is dominant. In the second stage, the plasmalemma density reaches a metastable state and transfer between the plasmalemma and disk region occurs, which is followed by an increase in density that is qualitatively similar for both regions. The final stage consists of both regions slowly evolving to the steady-state solution. Our results indicate that autoradiographic and cognate approaches for tracking labeled opsins in the COS cannot be effective methodologies for assessing new disk formation at the base of the COS.
机译:当使用放射性标记的前体和放射自显影技术来研究感光锥外段(COSs)中蛋白质成分的转换时,标记成分-主要是视觉色素分子(opsins)-沿COS分散分布。为进一步评估这种COS标记方式,我们推导简化的传质模型,用于量化对流和扩散机制对蛙视网膜COS中视蛋白分布的贡献。评估COS的两个包含视蛋白的区域:盘的核心轴向阵列和质膜。传质模型的数值解表明了系统演化的三个不同阶段。在第一阶段,血浆缺陷扩散占主导。在第二阶段,质膜密度达到亚稳态,并在质膜和圆盘区域之间发生转移,随后在密度上增加,这两个区域在质量上相似。最后阶段由两个区域逐渐演变为稳态解组成。我们的结果表明,用于在COS中跟踪标记的视蛋白的放射自显影和同类方法不能作为评估COS基础上新盘形成的有效方法。

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