Literature DB >> 18670060

Gene expression profiling in skeletal muscle of Holstein-Friesian bulls with single-nucleotide polymorphism in the myostatin gene 5'-flanking region.

Tomasz Sadkowski1, Michał Jank, Lech Zwierzchowski, Eulalia Siadkowska, Jolanta Oprzadek, Tomasz Motyl.   

Abstract

Myostatin (GDF-8) is a key protein responsible for skeletal muscle growth and development, thus mutations in the mstn gene can have major economic and breeding consequences. The aim of the present study was to investigate myostatin gene expression and transcriptional profile in skeletal muscle of Holstein-Friesian (Black-and-White) bulls carrying a polymorphism in the 5'-flanking region of the mstn gene (G/C transversion at position -7828). Real-time qRT-PCR and cDNA microarray revealed significantly lower mstn expression in muscle of bulls with the CC genotype, as compared to GG and GC genotypes. The direct comparison of skeletal muscle transcriptional profiles between the CC genotype and GG and GC genotypes resulted in identification of genes, of which at least some can be putative targets for myostatin. Using cDNA microarray, we identified 43 common genes (including mstn) with significantly different expression in skeletal muscle of bulls with the CC genotype, as compared to GG and GC genotypes, 15 of which were upregulated and 28 were downregulated in the CC genotype. Classification of molecular function of differentially expressed genes revealed the highest number of genes involved in the expression of cytoskeleton proteins (9), extracellular matrix proteins (4), nucleic acid-binding proteins (4), calcium-binding proteins (4), and transcription factors (4). The biological functions of the largest number of genes involved: protein metabolism and modification (10), signal transduction (10), cell structure (8), and developmental processes (8). The main identified signaling pathways were: Wnt (4), chemokines and cytokines (4), integrin (4), nicotine receptor for acetylocholine (3), TGF-beta (2), and cytoskeleton regulation by Rho GTPase (2). We identified previously unrecognized putatively myostatin-dependent genes, encoding transcription factors (EGR1, Nf1b, ILF1), components of the proteasomal complex (PSMB7, PSMD13) and proteins with some other molecular function in skeletal muscle (ITGB1BP3, Pla2g1b, ISYNA1, TNFAIP6, MST1, TNNT1, CALB3, CACYBP, and CTNNA1).

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Year:  2008        PMID: 18670060     DOI: 10.1007/BF03195620

Source DB:  PubMed          Journal:  J Appl Genet        ISSN: 1234-1983            Impact factor:   3.240


  36 in total

1.  Polymorphism in dinucleotide repeat (BTAFJ1) upstream to the bovine myostatin locus.

Authors:  F Jeanplong; M Sharma; K A Paterson; C A Morris; R Kambadur
Journal:  Anim Genet       Date:  2000-10       Impact factor: 3.169

Review 2.  Basic principles of muscle development and growth in meat-producing mammals as affected by the insulin-like growth factor (IGF) system.

Authors:  Niels Oksbjerg; Florence Gondret; Mogens Vestergaard
Journal:  Domest Anim Endocrinol       Date:  2004-10       Impact factor: 2.290

3.  Mutations in myostatin (GDF8) in double-muscled Belgian Blue and Piedmontese cattle.

Authors:  R Kambadur; M Sharma; T P Smith; J J Bass
Journal:  Genome Res       Date:  1997-09       Impact factor: 9.043

4.  A deletion in the myostatin gene causes the compact (Cmpt) hypermuscular mutation in mice.

Authors:  G Szabó; G Dallmann; G Müller; L Patthy; M Soller; L Varga
Journal:  Mamm Genome       Date:  1998-08       Impact factor: 2.957

5.  Molecular definition of an allelic series of mutations disrupting the myostatin function and causing double-muscling in cattle.

Authors:  L Grobet; D Poncelet; L J Royo; B Brouwers; D Pirottin; C Michaux; F Ménissier; M Zanotti; S Dunner; M Georges
Journal:  Mamm Genome       Date:  1998-03       Impact factor: 2.957

6.  The transcription factor EGR-1 suppresses transformation of human fibrosarcoma HT1080 cells by coordinated induction of transforming growth factor-beta1, fibronectin, and plasminogen activator inhibitor-1.

Authors:  C Liu; J Yao; I de Belle; R P Huang; E Adamson; D Mercola
Journal:  J Biol Chem       Date:  1999-02-12       Impact factor: 5.157

7.  Proteolytic processing of myostatin is auto-regulated during myogenesis.

Authors:  Craig McFarlane; Brett Langley; Mark Thomas; Alex Hennebry; Erin Plummer; Gina Nicholas; Chris McMahon; Mridula Sharma; Ravi Kambadur
Journal:  Dev Biol       Date:  2005-07-01       Impact factor: 3.582

8.  Gene expression profiling of muscle tissue in Brahman steers during nutritional restriction.

Authors:  K A Byrne; Y H Wang; S A Lehnert; G S Harper; S M McWilliam; H L Bruce; A Reverter
Journal:  J Anim Sci       Date:  2005-01       Impact factor: 3.159

9.  Two single nucleotide polymorphisms in the myostatin (GDF8) gene have significant association with muscle depth of commercial Charollais sheep.

Authors:  G Hadjipavlou; O Matika; A Clop; S C Bishop
Journal:  Anim Genet       Date:  2008-05-06       Impact factor: 3.169

10.  PANTHER: a browsable database of gene products organized by biological function, using curated protein family and subfamily classification.

Authors:  Paul D Thomas; Anish Kejariwal; Michael J Campbell; Huaiyu Mi; Karen Diemer; Nan Guo; Istvan Ladunga; Betty Ulitsky-Lazareva; Anushya Muruganujan; Steven Rabkin; Jody A Vandergriff; Olivier Doremieux
Journal:  Nucleic Acids Res       Date:  2003-01-01       Impact factor: 16.971

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  14 in total

1.  Comparison of skeletal muscle transcriptional profiles in dairy and beef breeds bulls.

Authors:  T Sadkowski; M Jank; L Zwierzchowski; J Oprzadek; T Motyl
Journal:  J Appl Genet       Date:  2009       Impact factor: 3.240

2.  Skeletal muscle gene expression after myostatin knockout in mature mice.

Authors:  Stephen Welle; Andrew Cardillo; Michelle Zanche; Rabi Tawil
Journal:  Physiol Genomics       Date:  2009-06-09       Impact factor: 3.107

3.  Early gene expression changes in skeletal muscle from SOD1(G93A) amyotrophic lateral sclerosis animal model.

Authors:  Gabriela P de Oliveira; Jessica R Maximino; Mariana Maschietto; Edmar Zanoteli; Renato D Puga; Leandro Lima; Dirce M Carraro; Gerson Chadi
Journal:  Cell Mol Neurobiol       Date:  2014-01-18       Impact factor: 5.046

4.  A promoter polymorphism of MSTN g.-371T>A and its associations with carcass traits in Korean cattle.

Authors:  Sang-Hyun Han; In-Cheol Cho; Moon-Suck Ko; Eun-Young Kim; Se-Pill Park; Sung-Soo Lee; Hong-Shik Oh
Journal:  Mol Biol Rep       Date:  2011-07-09       Impact factor: 2.316

5.  Nrk2b-mediated NAD+ production regulates cell adhesion and is required for muscle morphogenesis in vivo: Nrk2b and NAD+ in muscle morphogenesis.

Authors:  Michelle F Goody; Meghan W Kelly; Kevin N Lessard; Andre Khalil; Clarissa A Henry
Journal:  Dev Biol       Date:  2010-06-08       Impact factor: 3.582

6.  Repurposing L-Menthol for Systems Medicine and Cancer Therapeutics? L-Menthol Induces Apoptosis through Caspase 10 and by Suppressing HSP90.

Authors:  Uzma Faridi; Sunita S Dhawan; Shaifali Pal; Sanchita Gupta; Ashutosh K Shukla; Mahendra P Darokar; Ashok Sharma; Ajit K Shasany
Journal:  OMICS       Date:  2016-01

7.  Rapid Genotyping of MSTN Gene Polymorphism Using High-resolution Melting for Association Study in Rabbits.

Authors:  Jin Peng; Gong-Wei Zhang; Wen-Xiu Zhang; Yun-Fu Liu; Yu Yang; Song-Jia Lai
Journal:  Asian-Australas J Anim Sci       Date:  2013-01       Impact factor: 2.509

8.  Transcriptomic profile adaptations following exposure of equine satellite cells to nutriactive phytochemical gamma-oryzanol.

Authors:  K A Szcześniak; A Ciecierska; P Ostaszewski; T Sadkowski
Journal:  Genes Nutr       Date:  2016-03-17       Impact factor: 5.523

9.  Structural and Dynamic Characterization of the C313Y Mutation in Myostatin Dimeric Protein, Responsible for the "Double Muscle" Phenotype in Piedmontese Cattle.

Authors:  Silvia Bongiorni; Alessio Valentini; Giovanni Chillemi
Journal:  Front Genet       Date:  2016-02-11       Impact factor: 4.599

10.  Population differentiated copy number variation of Bos taurus, Bos indicus and their African hybrids.

Authors:  Jisung Jang; Endashaw Terefe; Kwondo Kim; Young Ho Lee; Gurja Belay; Abdulfatai Tijjani; Jian-Lin Han; Olivier Hanotte; Heebal Kim
Journal:  BMC Genomics       Date:  2021-07-12       Impact factor: 4.547

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