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  3. HtrA1 Mediated Intracellular Effects on Tubulin Using a Polarized RPE Disease Model.
 

HtrA1 Mediated Intracellular Effects on Tubulin Using a Polarized RPE Disease Model.

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BORIS DOI
10.7892/boris.108510
Date of Publication
January 2018
Publication Type
Article
Division/Institute

Department for BioMed...

Author
Melo, Esther
Oertle, Philipp
Trepp, Carolyn Mary
Department for BioMedical Research, Forschungsgruppe Augenheilkunde
Universitätsklinik für Augenheilkunde
Meistermann, Hélène
Burgoyne, Thomas
Sborgi, Lorenzo
Cabrera, Alvaro Cortes
Chen, Chia-Yi
Hoflack, Jean-Christophe
Kam-Thong, Tony
Schmucki, Roland
Badi, Laura
Flint, Nicholas
Ghiani, Zeynep Eren
Delobel, Fréderic
Stucki, Corinne
Gromo, Giulia
Einhaus, Alfred
Hornsperger, Benoit
Golling, Sabrina
Siebourg-Polster, Juliane
Gerber, Francoise
Bohrmann, Bernd
Futter, Clare
Dunkley, Tom
Hiller, Sebastian
Schilling, Oliver
Enzmann, Volkerorcid-logo
Department for BioMedical Research, Forschungsgruppe Augenheilkunde
Universitätsklinik für Augenheilkunde
Fauser, Sascha
Plodinec, Marija
Iacone, Roberto
Subject(s)

600 - Technology::610...

Series
EBioMedicine
ISSN or ISBN (if monograph)
2352-3964
Publisher
Elsevier
Language
English
Publisher DOI
10.1016/j.ebiom.2017.12.011
PubMed ID
29269042
Uncontrolled Keywords

Age-related macular d...

pigmented epithelium

Description
Age-related macular degeneration (AMD) is the leading cause of irreversible vision loss. The protein HtrA1 is enriched in retinal pigment epithelial (RPE) cells isolated from AMD patients and in drusen deposits. However, it is poorly understood how increased levels of HtrA1 affect the physiological function of the RPE at the intracellular level. Here, we developed hfRPE (human fetal retinal pigment epithelial) cell culture model where cells fully differentiated into a polarized functional monolayer. In this model, we fine-tuned the cellular levels of HtrA1 by targeted overexpression. Our data show that HtrA1 enzymatic activity leads to intracellular degradation of tubulin with a corresponding reduction in the number of microtubules, and consequently to an altered mechanical cell phenotype. HtrA1 overexpression further leads to impaired apical processes and decreased phagocytosis, an essential function for photoreceptor survival. These cellular alterations correlate with the AMD phenotype and thus highlight HtrA1 as an intracellular target for therapeutic interventions towards AMD treatment.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/156546
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1-s2.0-S2352396417304929-main.pdftextAdobe PDF1.21 MBAttribution-NonCommercial-NoDerivatives (CC BY-NC-ND 4.0)publishedOpen
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