| Literature DB >> 29102726 |
Aicha Melouane1, Abdelaziz Ghanemi1, Simon Aubé2, Mayumi Yoshioka2, Jonny St-Amand3.
Abstract
Identifying therapeutic target genes represents the key step in functional genomics-based therapies. Within this context, the disease heterogeneity, the exogenous factors and the complexity of genomic structure and function represent important challenges. The functional genomics aims to overcome such obstacles via identifying the gene functions and therefore highlight disease-causing genes as therapeutic targets. Genomic technologies promise to reshape the research on ageing muscle, exercise response and drug discovery. Herein, we describe the functional genomics strategies, mainly differential gene expression methods microarray, serial analysis of gene expression (SAGE), massively parallel signature sequence (MPSS), RNA sequencing (RNA seq), representational difference analysis (RDA), and suppression subtractive hybridization (SSH). Furthermore, we review these illustrative approaches that have been used to discover new therapeutic targets for some complex diseases along with the application of these tools to study the modulation of the skeletal muscle transcriptome.Keywords: Ageing; Exercise; Functional genomics; Skeletal muscle; Target gene; Transcriptome
Mesh:
Year: 2017 PMID: 29102726 DOI: 10.1016/j.arr.2017.10.006
Source DB: PubMed Journal: Ageing Res Rev ISSN: 1568-1637 Impact factor: 10.895