Literature DB >> 12783983

Gene expression profile of aging in human muscle.

Stephen Welle1, Andrew I Brooks, Joseph M Delehanty, Nancy Needler, Charles A Thornton.   

Abstract

Studies of gene expression related to aging of skeletal muscle have included few subjects or a limited number of genes. We conducted the present study to produce more comprehensive gene expression profiles. RNA was extracted from vastus lateralis biopsies obtained from healthy young (21-27 yr old, n = 8) and older men (67-75 yr old, n = 8) and was analyzed with high-density oligonucleotide arrays. Of the approximately 44,000 probe sets on the arrays, approximately 18,000 yielded adequate signals for statistical analysis. There were approximately 700 probe sets for which t-tests or rank sum tests indicated a difference (P <or= 0.01) in mean expression between young and old and for which the estimated false discovery rate was <10%. Most of these differences were less than 1.5-fold in magnitude. Genes that encode proteins involved in energy metabolism and mitochondrial protein synthesis were expressed at a lower level in older muscle. Genes encoding metallothioneins, high-mobility-group proteins, heterogeneous nuclear ribonucleoproteins and other RNA binding/processing proteins, and components of the ubiquitin-proteasome proteolytic pathway were expressed at higher levels in older muscle. Expression of numerous genes involved with stress responses, hormone/cytokine/growth factor signaling, control of the cell cycle and apoptosis, and transcriptional regulation appeared to be affected by aging. More transcripts were detected in older muscle, suggesting dedifferentiation, an increased number of splice variants, or increased cellular heterogeneity. We conclude that in human skeletal muscle the expression of many genes tends to increase or decrease between the third and seventh decades. The changes are modest when averaged over all of the cells in the tissue.

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Year:  2003        PMID: 12783983     DOI: 10.1152/physiolgenomics.00049.2003

Source DB:  PubMed          Journal:  Physiol Genomics        ISSN: 1094-8341            Impact factor:   3.107


  128 in total

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2.  Transcriptome signature of resistance exercise adaptations: mixed muscle and fiber type specific profiles in young and old adults.

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3.  Synchronized age-related gene expression changes across multiple tissues in human and the link to complex diseases.

Authors:  Jialiang Yang; Tao Huang; Francesca Petralia; Quan Long; Bin Zhang; Carmen Argmann; Yong Zhao; Charles V Mobbs; Eric E Schadt; Jun Zhu; Zhidong Tu
Journal:  Sci Rep       Date:  2015-10-19       Impact factor: 4.379

4.  Effects of ageing on expression of the muscle-specific E3 ubiquitin ligases and Akt-dependent regulation of Foxo transcription factors in skeletal muscle.

Authors:  Akira Wagatsuma; Masataka Shiozuka; Yuzo Takayama; Takayuki Hoshino; Kunihiko Mabuchi; Ryoichi Matsuda
Journal:  Mol Cell Biochem       Date:  2015-11-20       Impact factor: 3.396

5.  Contributions of the ubiquitin-proteasome pathway and apoptosis to human skeletal muscle wasting with age.

Authors:  Samantha A Whitman; Michael J Wacker; Scott R Richmond; Michael P Godard
Journal:  Pflugers Arch       Date:  2005-06-11       Impact factor: 3.657

6.  Aging and microRNA expression in human skeletal muscle: a microarray and bioinformatics analysis.

Authors:  Micah J Drummond; John J McCarthy; Mala Sinha; Heidi M Spratt; Elena Volpi; Karyn A Esser; Blake B Rasmussen
Journal:  Physiol Genomics       Date:  2010-09-28       Impact factor: 3.107

7.  Stem Cells in Aging: Influence of Ontogenic, Genetic and Environmental Factors.

Authors:  Edmond J Yunis; Joaquin Zúñiga; Prasad S Koka; Zaheed Husain; Viviana Romero; Joel N H Stern; Masha Fridkis-Hareli
Journal:  J Stem Cells       Date:  2006

8.  Age-dependent skeletal muscle transcriptome response to bed rest-induced atrophy.

Authors:  Ziad S Mahmassani; Paul T Reidy; Alec I McKenzie; Chris Stubben; Michael T Howard; Micah J Drummond
Journal:  J Appl Physiol (1985)       Date:  2019-01-03

Review 9.  Emerging molecular mediators and targets for age-related skeletal muscle atrophy.

Authors:  Lemuel A Brown; Steve D Guzman; Susan V Brooks
Journal:  Transl Res       Date:  2020-03-10       Impact factor: 7.012

10.  Human genome comparison of paretic and nonparetic vastus lateralis muscle in patients with hemiparetic stroke.

Authors:  Michael J McKenzie; Shuzhen Yu; Richard F Macko; John C McLenithan; Charlene E Hafer-Macko
Journal:  J Rehabil Res Dev       Date:  2008
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