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晶状体MP20介导的黏附连接的结构。

Structure of the lens MP20 mediated adhesive junction.

作者信息

Nicolas William J, Shiriaeva Anna, Martynowycz Michael W, Grey Angus C, Ruma Yasmeen, Donaldson Paul J, Gonen Tamir

机构信息

Department of Biological Chemistry, David Geffen School of Medicine, University of California, Los Angeles, CA 90095.

Howard Hughes Medical Institute, University of California, Los Angeles, CA 90095.

出版信息

bioRxiv. 2024 May 13:2024.05.13.594022. doi: 10.1101/2024.05.13.594022.

Abstract

Human lens fiber membrane intrinsic protein MP20 is the second most abundant membrane protein of the human eye lens. Despite decades of effort its structure and function remained elusive. Here, we determined the MicroED structure of full-length human MP20 in lipidic-cubic phase to a resolution of 3.5 Å. MP20 forms tetramers each of which contain 4 transmembrane α-helices that are packed against one another forming a helical bundle. Both the N- and C- termini of MP20 are cytoplasmic. We found that each MP20 tetramer formed adhesive interactions with an opposing tetramer in a head-to-head fashion. These interactions were mediated by the extracellular loops of the protein. The dimensions of the MP20 adhesive junctions are consistent with the 11 nm thin lens junctions. Investigation of MP20 localization in human lenses indicated that in young fiber cells MP20 was stored intracellularly in vesicles and upon fiber cell maturation MP20 inserted into the plasma membrane and restricted the extracellular space. Together these results suggest that MP20 forms lens thin junctions in vivo confirming its role as a structural protein in the human eye lens, essential for its optical transparency.

摘要

人晶状体纤维膜内在蛋白MP20是人眼晶状体中含量第二丰富的膜蛋白。尽管经过数十年的努力,其结构和功能仍不清楚。在此,我们在脂质立方相中确定了全长人MP20的微晶电子衍射结构,分辨率为3.5埃。MP20形成四聚体,每个四聚体包含4个跨膜α螺旋,它们相互堆积形成一个螺旋束。MP20的N端和C端均位于细胞质中。我们发现每个MP20四聚体以头对头的方式与相对的四聚体形成粘附相互作用。这些相互作用由蛋白质的细胞外环介导。MP20粘附连接的尺寸与11纳米的晶状体细连接一致。对人晶状体中MP20定位的研究表明,在年轻的纤维细胞中,MP20储存在细胞内的囊泡中,在纤维细胞成熟时,MP20插入质膜并限制细胞外空间。这些结果共同表明,MP20在体内形成晶状体细连接,证实了其作为人眼晶状体结构蛋白的作用,这对其光学透明度至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d7c/11118347/5c00d0e26dc4/nihpp-2024.05.13.594022v1-f0001.jpg

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