Literature DB >> 15268757

Genome-scale expression profiling of Hutchinson-Gilford progeria syndrome reveals widespread transcriptional misregulation leading to mesodermal/mesenchymal defects and accelerated atherosclerosis.

Antonei B Csoka1, Sangeeta B English, Carl P Simkevich, David G Ginzinger, Atul J Butte, Gerald P Schatten, Frank G Rothman, John M Sedivy.   

Abstract

Hutchinson-Gilford progeria syndrome (HGPS) is a rare genetic disease with widespread phenotypic features resembling premature aging. HGPS was recently shown to be caused by dominant mutations in the LMNA gene, resulting in the in-frame deletion of 50 amino acids near the carboxyl terminus of the encoded lamin A protein. Children with this disease typically succumb to myocardial infarction or stroke caused by severe atherosclerosis at an average age of 13 years. To elucidate further the molecular pathogenesis of this disease, we compared the gene expression patterns of three HGPS fibroblast cell strains heterozygous for the LMNA mutation with three normal, age-matched cell strains. We defined a set of 361 genes (1.1% of the approximately 33,000 genes analysed) that showed at least a 2-fold, statistically significant change. The most prominent categories encode transcription factors and extracellular matrix proteins, many of which are known to function in the tissues severely affected in HGPS. The most affected gene, MEOX2/GAX, is a homeobox transcription factor implicated as a negative regulator of mesodermal tissue proliferation. Thus, at the gene expression level, HGPS shows the hallmarks of a developmental disorder affecting mesodermal and mesenchymal cell lineages. The identification of a large number of genes implicated in atherosclerosis is especially valuable, because it provides clues to pathological processes that can now be investigated in HGPS patients or animal models.

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Year:  2004        PMID: 15268757     DOI: 10.1111/j.1474-9728.2004.00105.x

Source DB:  PubMed          Journal:  Aging Cell        ISSN: 1474-9718            Impact factor:   9.304


  85 in total

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Journal:  J Biosci       Date:  2006-09       Impact factor: 1.826

Review 4.  Nuclear lamins: major factors in the structural organization and function of the nucleus and chromatin.

Authors:  Thomas Dechat; Katrin Pfleghaar; Kaushik Sengupta; Takeshi Shimi; Dale K Shumaker; Liliana Solimando; Robert D Goldman
Journal:  Genes Dev       Date:  2008-04-01       Impact factor: 11.361

5.  Increased expression of the Hutchinson-Gilford progeria syndrome truncated lamin A transcript during cell aging.

Authors:  Sofia Rodriguez; Fabio Coppedè; Hanna Sagelius; Maria Eriksson
Journal:  Eur J Hum Genet       Date:  2009-01-28       Impact factor: 4.246

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Authors:  Yue-Bei Luo; Chalermchai Mitrpant; Russell Johnsen; Vicki Fabian; Merrilee Needham; Sue Fletcher; Steve D Wilton; Frank L Mastaglia
Journal:  Int J Clin Exp Pathol       Date:  2013-08-15

7.  Accelerated telomere shortening and replicative senescence in human fibroblasts overexpressing mutant and wild-type lamin A.

Authors:  Shurong Huang; Rosa Ana Risques; George M Martin; Peter S Rabinovitch; Junko Oshima
Journal:  Exp Cell Res       Date:  2007-08-16       Impact factor: 3.905

8.  Reversal of the cellular phenotype in the premature aging disease Hutchinson-Gilford progeria syndrome.

Authors:  Paola Scaffidi; Tom Misteli
Journal:  Nat Med       Date:  2005-03-06       Impact factor: 53.440

9.  Defective lamin A-Rb signaling in Hutchinson-Gilford Progeria Syndrome and reversal by farnesyltransferase inhibition.

Authors:  Jackleen Marji; Seán I O'Donoghue; Dayle McClintock; Venkata P Satagopam; Reinhard Schneider; Desiree Ratner; Howard J Worman; Leslie B Gordon; Karima Djabali
Journal:  PLoS One       Date:  2010-06-15       Impact factor: 3.240

Review 10.  Studies of complex biological systems with applications to molecular medicine: the need to integrate transcriptomic and proteomic approaches.

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Journal:  J Biomed Biotechnol       Date:  2010-10-11
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