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头足类动物双节段眼晶状体中的膜结构和功能相关性

Membrane structures and functional correlates in the bi-segmented eye lens of the cephalopod.

机构信息

Structural Biophysics Group, Cardiff Centre for Vision Science, School of Optometry and Vision Sciences, Cardiff University, Maindy Road, Cardiff, CF24 4HQ, Wales, UK.

SPring-8, Japan Synchrotron Radiation Research Institute, 1-1-1, Kouto, Sayo-cho, Sayo-gun, Hyogo, 679-5198Japan.

出版信息

Biol Open. 2024 Sep 15;13(9). doi: 10.1242/bio.060445. Epub 2024 Aug 29.

Abstract

The cephalopod eye lens is unique because it has evolved as a compound structure with two physiologically distinct segments. However, the detailed ultrastructure of this lens and precise optical role of each segment are far from clear. To help elucidate structure-function relationships in the cephalopod lens, we conducted multiple structural investigations on squid. Synchrotron x-ray scattering and transmission electron microscopy disclose that an extensive network of structural features that resemble cell membrane complexes form a substantial component of both anterior and posterior lens segments. Optically, the segments are distinct, however, and Talbot interferometry indicates that the posterior segment possesses a noticeably higher refractive index gradient. We propose that the hitherto unrecognised network of membrane structures in the cephalopod lens has evolved to act as an essential conduit for the internal passage of ions and other metabolic agents through what is otherwise a highly dense structure owing to a very high protein concentration.

摘要

头足类动物的眼睛晶状体很独特,因为它已经进化为具有两个在生理上明显不同的部分的复合结构。然而,这种晶状体的详细超微结构和每个部分的精确光学作用还远不清楚。为了帮助阐明头足类动物晶状体的结构-功能关系,我们对头足类动物进行了多次结构研究。同步加速器 X 射线散射和透射电子显微镜显示,大量类似于细胞膜复合物的结构特征构成了前、后晶状体段的重要组成部分。然而,这些部分在光学上是不同的,Talbot 干涉测量表明后段具有明显更高的折射率梯度。我们提出,头足类动物晶状体中迄今尚未被识别的膜结构网络已经进化,成为内部离子和其他代谢物通过高度密集结构(由于蛋白质浓度非常高)的重要通道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b272/11381927/684cf695a1a4/biolopen-13-060445-g1.jpg

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