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Retinal regions shape human and murine Müller cell proteome profile and functionality.

Published version
Peer-reviewed

Change log

Abstract

The human macula is a highly specialized retinal region with pit-like morphology and rich in cones. How Müller cells, the principal glial cell type in the retina, are adapted to this environment is still poorly understood. We compared proteomic data from cone- and rod-rich retinae from human and mice and identified different expression profiles of cone- and rod-associated Müller cells that converged on pathways representing extracellular matrix and cell adhesion. In particular, epiplakin (EPPK1), which is thought to play a role in intermediate filament organization, was highly expressed in macular Müller cells. Furthermore, EPPK1 knockout in a human Müller cell-derived cell line led to a decrease in traction forces as well as to changes in cell size, shape, and filopodia characteristics. We here identified EPPK1 as a central molecular player in the region-specific architecture of the human retina, which likely enables specific functions under the immense mechanical loads in vivo.

Description

Journal Title

Glia

Conference Name

Journal ISSN

0894-1491
1098-1136

Volume Title

Publisher

Wiley

Rights and licensing

Except where otherwised noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/
Sponsorship
Austrian Science Fund (P30310)
Deutsche Forschungsgemeinschaft (GR 4403/1‐1, GR 4403/5‐1, GR 4403/7‐1, HA 6014/5‐1)
ProRetina Foundation Germany (Pro‐Re/Seed/Grosche.1‐2014, Pro‐Re/Seed/Kaplan‐Grosche.1‐2019)