首页 | 本学科首页   官方微博 | 高级检索  
     


Proteomic consequences of expression and pathological conversion of the prion protein in inducible neuroblastoma N2a cells
Authors:Monique Provansal   St��phane Roche   Manuela Pastore   Danielle Casanova   Maxime Belondrade   Sandrine Alais   Pascal Leblanc   Otto Windl   Sylvain Lehmann
Affiliation:1.CNRS; Institut de Génétique Humaine UPR1142; Biochimie-Protéomique Clinique; CHU de Montpellier; Montpellier, France;2.Université Montpellier; Biochimie-Protéomique Clinique; CHU de Montpellier; Montpellier, France;3.Institut de Recherches en Biothérapie (IRB); Biochimie-Protéomique Clinique; CHU de Montpellier; Montpellier, France;4.INSERM U758; ENS; Lyon, France;5.Veterinary Laboratories Agency Weybridge; Addlestone, UK
Abstract:Neurodegenerative diseases are often associated with misfolding and deposition of specific proteins in the nervous system. The prion protein, which is associated with transmissible spongiform encephalopathies (TSEs), is one of them. The normal function of the cellular form of the prion protein (PrPC) is mediated through specific signal transduction pathways and is linked to resistance to oxidative stress, neuronal outgrowth and cell survival. In TSEs, PrPC is converted into an abnormally folded isoform, called PrPSc, that may impair the normal function of the protein and/or generate toxic aggregates. To investigate these molecular events we performed a two-dimensional gel electrophoresis comparison of neuroblastoma N2a cells expressing different amounts of PrPC and eventually infected with the 22L prion strain. Mass spectrometry and peptide mass fingerprint analysis identified a series of proteins with modified expression. They included the chaperones Grp78/BiP, protein disulfide-isomerase A6, Grp75 and Hsp60 which had an opposite expression upon PrPC expression and PrPSc production. The detection of these proteins was coherent with the idea that protein misfolding plays an important role in TSEs. Other proteins, such as calreticulin, tubulin, vimentin or the laminin receptor had their expression modified in infected cells, which was reminiscent of previous results. Altogether our data provide molecular information linking PrP expression and misfolding, which could be the basis of further therapeutic and pathophysiological research in this field.Key words: chaperones, neuroblastoma, prion, proteomics
Keywords:
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号