Gene expression profiling in frataxin deficient mice: Microarray evidence for significant expression changes without detectable neurodegeneration

  • Coppola, G; 
  • Choi, SH; 
  • Santos, MM; 
  • Miranda, CJ; 
  • Tentler, D; 
  • 외 3명
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WEB OF SCIENCE

42
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SCOPUS

52

초록

Friedreich's ataxia (FRDA) is caused by reduction of frataxin levels to 5-35%. To better understand the biochemical sequelae of frataxin reduction, in absence of the confounding effects of neurodegeneration, we studied the gene expression profile of a mouse model expressing 25-36% of the normal frataxin levels, and not showing a detectable phenotype or neurodegenerative features. Despite having no overt phenotype, a clear microarray gene expression phenotype was observed. This phenotype followed the known regional susceptibility in this disease, most changes occurring in the spinal cord. Additionally, gene ontology analysis identified a clear mitochondrial component, consistent with previous findings. We were able to confirm a subset of changes in fibroblast cell lines from patients. The identification of a core set of genes changing early in the FRDA pathogenesis can be a useful tool in both clarifying the disease process and in evaluating new therapeutic strategies. (c) 2006 Elsevier Inc. All rights reserved.

키워드

Friedreich's ataxia; microarray; mouse model; frataxin; neurodegeneration; knockin/knockout; TOCOPHEROL TRANSFER PROTEIN; FRIEDREICH-ATAXIA PATIENTS; TRIPLET-REPEAT EXPANSION; OXIDATIVE STRESS; TRANSGENIC MICE; CDNA MICROARRAY; MOUSE MODELS; IRON; CELLS; PATHWAY
제목
Gene expression profiling in frataxin deficient mice: Microarray evidence for significant expression changes without detectable neurodegeneration
저자
Coppola, G; Choi, SH; Santos, MM; Miranda, CJ; Tentler, D; Wexler, EM; Pandolfo, M; Geschwind, DH
DOI
10.1016/j.nbd.2005.11.014
발행일
2006-05
유형
Article
저널명
Neurobiology of Disease
권
22
호
2
페이지
302 ~ 311