Targeted differential gene expression profiling of skeletal muscles isolated from Ts1Cje mouse model for Down syndrome

Introduction: Down Syndrome (DS) is a chromosomal condition characterised by human chromosome 21 (HSA21) with DS critical region located on the chromosome 21q22. Owing to its polygenic basis, the phenotypes of DS are associated with delays in development of motor function including muscle hypotoria,...

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Main Authors: Leong, Melody Pui Yee, Bala, Usman, Rosli, Rozita, Cheah, Pike See, Ling, King Hwa
Format: Conference or Workshop Item
Language:English
Published: 2015
Online Access:http://psasir.upm.edu.my/id/eprint/75604/1/Targeted%20differential%20gene%20expression%20profiling%20of%20skeletal%20muscles%20isolated%20from%20Ts1Cje%20mouse%20model%20for%20Down%20syndrome.pdf
http://psasir.upm.edu.my/id/eprint/75604/
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spelling my.upm.eprints.756042019-11-12T02:33:01Z http://psasir.upm.edu.my/id/eprint/75604/ Targeted differential gene expression profiling of skeletal muscles isolated from Ts1Cje mouse model for Down syndrome Leong, Melody Pui Yee Bala, Usman Rosli, Rozita Cheah, Pike See Ling, King Hwa Introduction: Down Syndrome (DS) is a chromosomal condition characterised by human chromosome 21 (HSA21) with DS critical region located on the chromosome 21q22. Owing to its polygenic basis, the phenotypes of DS are associated with delays in development of motor function including muscle hypotoria, joint hyperextensibility, delayed acquisition of postural control and poor balance. Numerous studies have revealed alterations of numerous pathways at the transcript level in muscles from other DS models such as rat and Ts65Dn mice. The mouse model used in this study is the Ts1Cje mouse model, trisomic for a region of MMU16 which encompasses a higher number of HSA21 orthologous genes. Thus, Ts1Cje model has developmental, behavioural and physical characteristics similar to that of individuals with Down syndrome. Method: In this study, soleus and extensor digitorum longus (EDL) muscles were harvested from both male and female Ts1Cje and disomic control mice. The gene expressions were profiled using the quantitative reverse transcription PCR (RT-qPCR) and analysed with the relative expression software tool (REST). We focused on genes in pathways involved in muscle structural stability, force production as well as neuromuscular signalling pathways. Results: The gene studied were Lamc1, Leprel1, My16b, Msn, Pgm5, Tmod1, Istn, Synj and Rcan. Results showed significant differential expression on My16b and Itsn1 in male soleus muscles while there was no significant differential expression of the other genes in both male and female soleus and EDL muscles. Further investigation on the role of My16b and Istn at the protein level may provide insight on the underlying mechanism responsible for hypotonia in Ts1Cje as well as Down syndrome individuals. 2015 Conference or Workshop Item PeerReviewed text en http://psasir.upm.edu.my/id/eprint/75604/1/Targeted%20differential%20gene%20expression%20profiling%20of%20skeletal%20muscles%20isolated%20from%20Ts1Cje%20mouse%20model%20for%20Down%20syndrome.pdf Leong, Melody Pui Yee and Bala, Usman and Rosli, Rozita and Cheah, Pike See and Ling, King Hwa (2015) Targeted differential gene expression profiling of skeletal muscles isolated from Ts1Cje mouse model for Down syndrome. In: 26th Annual Scientific Meeting of Malaysian Society of Neurosciences (MSN 2015), 5-7 June 2015, WEIL Hotel, Ipoh, Perak. (p. 40).
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description Introduction: Down Syndrome (DS) is a chromosomal condition characterised by human chromosome 21 (HSA21) with DS critical region located on the chromosome 21q22. Owing to its polygenic basis, the phenotypes of DS are associated with delays in development of motor function including muscle hypotoria, joint hyperextensibility, delayed acquisition of postural control and poor balance. Numerous studies have revealed alterations of numerous pathways at the transcript level in muscles from other DS models such as rat and Ts65Dn mice. The mouse model used in this study is the Ts1Cje mouse model, trisomic for a region of MMU16 which encompasses a higher number of HSA21 orthologous genes. Thus, Ts1Cje model has developmental, behavioural and physical characteristics similar to that of individuals with Down syndrome. Method: In this study, soleus and extensor digitorum longus (EDL) muscles were harvested from both male and female Ts1Cje and disomic control mice. The gene expressions were profiled using the quantitative reverse transcription PCR (RT-qPCR) and analysed with the relative expression software tool (REST). We focused on genes in pathways involved in muscle structural stability, force production as well as neuromuscular signalling pathways. Results: The gene studied were Lamc1, Leprel1, My16b, Msn, Pgm5, Tmod1, Istn, Synj and Rcan. Results showed significant differential expression on My16b and Itsn1 in male soleus muscles while there was no significant differential expression of the other genes in both male and female soleus and EDL muscles. Further investigation on the role of My16b and Istn at the protein level may provide insight on the underlying mechanism responsible for hypotonia in Ts1Cje as well as Down syndrome individuals.
format Conference or Workshop Item
author Leong, Melody Pui Yee
Bala, Usman
Rosli, Rozita
Cheah, Pike See
Ling, King Hwa
spellingShingle Leong, Melody Pui Yee
Bala, Usman
Rosli, Rozita
Cheah, Pike See
Ling, King Hwa
Targeted differential gene expression profiling of skeletal muscles isolated from Ts1Cje mouse model for Down syndrome
author_facet Leong, Melody Pui Yee
Bala, Usman
Rosli, Rozita
Cheah, Pike See
Ling, King Hwa
author_sort Leong, Melody Pui Yee
title Targeted differential gene expression profiling of skeletal muscles isolated from Ts1Cje mouse model for Down syndrome
title_short Targeted differential gene expression profiling of skeletal muscles isolated from Ts1Cje mouse model for Down syndrome
title_full Targeted differential gene expression profiling of skeletal muscles isolated from Ts1Cje mouse model for Down syndrome
title_fullStr Targeted differential gene expression profiling of skeletal muscles isolated from Ts1Cje mouse model for Down syndrome
title_full_unstemmed Targeted differential gene expression profiling of skeletal muscles isolated from Ts1Cje mouse model for Down syndrome
title_sort targeted differential gene expression profiling of skeletal muscles isolated from ts1cje mouse model for down syndrome
publishDate 2015
url http://psasir.upm.edu.my/id/eprint/75604/1/Targeted%20differential%20gene%20expression%20profiling%20of%20skeletal%20muscles%20isolated%20from%20Ts1Cje%20mouse%20model%20for%20Down%20syndrome.pdf
http://psasir.upm.edu.my/id/eprint/75604/
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