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Series GSE435 Query DataSets for GSE435
Status Public on Aug 18, 2003
Title 48h EC/IC/C mouse
Organism Mus musculus
Experiment type Expression profiling by array
Summary Mice were subjected to 50 eccentric contractions (EC) or 50 isometric contractions (IC) using a non-invasive model, and then sacrificed 48 hours later. RNA from the tibialis anterior of 4 animals were pooled and then split into two groups for hybridization onto two separate Affymetrix MGU74Av2 chips. Control samples were contralateral to the exercised legs, and were only subjected to enough contractions to measure isometric torque.

Eccentric contractions (ECs), in which a muscle is forced to lengthen while activated, result in muscle injury and, eventually, muscle strengthening and prevention of further injury. Although the mechanical basis of eccentric contraction-induced injury has been studied in detail, muscle's biological response is less well characterized. This study presents the development of a minimally-invasive model of EC injury in the mouse, follows the time course of torque recovery after an injurious bout of ECs, and uses Affymetrix microarrays to compare the gene expression profile 48 hours after ECs to both isometrically stimulated muscles and contralateral muscles. Torque dropped by about 55% immediately after the exercise bout, and recovered to initial levels 7 days later. 36 known genes were upregulated after ECs compared to contralateral and isometrically stimulated muscles, including five muscle specific genes: muscle LIM protein (MLP), Muscle Ankyrin Repeat Proteins (MARP 1 and 2; also known as cardiac ankyrin repeat protein and Arpp/Ankrd2, respectively), Xin, and Myosin Binding Protein H. The time courses of MLP and MARP expression after the injury bout (determined by quantitative real-time polymerase chain reaction) indicate that these genes are rapidly induced, reaching a peak expression level of 6-11 times contralateral values 12-24 hours after the EC bout and returning to baseline within 72 hours. Very little gene induction was seen after either isometric activation or passive stretch, indicating that the MLP and MARP genes may play an important and specific role in the biological response of muscle to EC-induced injury.
Keywords = mouse tibialis anterior eccentric isometric contraction muscle
Keywords: other
 
 
Contributor(s) Barash IA, Lieber RL
Citation(s) 14561590
Submission date May 20, 2003
Last update date Feb 18, 2018
Contact name Richard Louis Lieber
E-mail(s) rlieber@ucsd.edu
Phone 858-552-8585 x7016
Fax 858-552-4381
URL http://muscle.ucsd.edu
Organization name University of California
Department Orthopaedics and Bioengineering
Lab Muscle Physiology
Street address 9500 Gilman Drive
City La Jolla
State/province CA
ZIP/Postal code 92093-9151
Country USA
 
Platforms (1)
GPL81 [MG_U74Av2] Affymetrix Murine Genome U74A Version 2 Array
Samples (6)
GSM6689 48h Control A
GSM6690 48h Control B
GSM6691 48h EC A
Relations
BioProject PRJNA85011

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Supplementary data files not provided

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