167
Views
6
CrossRef citations to date
0
Altmetric
Original Articles

Cloning and Expression of SFRP5 in Tibetan Chicken and its Relationship with IMF Deposition

, , , , , , , & show all

References

  • Chamba YZ, Zhang H, Shang P, et al. Carcass characteristics and meat quality of Tibetan chicken. J China Agric Univ 2008; 13(1):47–50.
  • Ye Y, Lin S, Mu H, et al. Analysis of differentially expressed genes and signaling pathways related to intramuscular fat deposition in skeletal muscle of sex-linked dwarf chickens. Biomed Res Int 2014; 2014:724274.
  • Hocquette JF, Gondret F, Baéza E, et al. Intramuscular fat content in meat-producing animals: development, genetic and nutritional control, and identification of putative markers. Animal 2010; 4(2):303–319.
  • Wood JD. Effects of carcass fatness and sex on the composition and quality of pigmeat. Brisbane Australia: 34th International Congress of Meat Science and Technology. 1988; 562–564.
  • Geay Y, Bauchart D, Hocquette JF, et al. Effect of nutritional factors on biochemical, structural and metabolic characteristics of muscles in ruminants. Reprod Nutr Dev 2001; 41:1–26.
  • Gondret F, Lebret B. Feeding intensity and dietary protein level affect adipocyte cellularity and lipogenic capacity of muscle homogenates in growing pigs, without modification of the expression of sterol regulatory element binding protein. J Anim Sci 2002; 80:3184–3193.
  • Hrdinka C, Zollitsch W, Knaus W, et al. Effects of dietary fatty acid pattern on melting point and composition of adipose tissues and intramuscular fat of broiler carcasses. Poult Sci 1996; 75(2):208–215.
  • Zhou XJ, Zhu NH, Zhang RJ. Effects of breed, age and feeding regime on inosine-5′- monophosphate and intramuscular fat contents in broiler. Chin J Anim Nutrit 2010; 22(5):1251–1256.
  • Rule DC, MacNeil MD, Short RE. Influence of sire growth potential time on feed, and growing-finishing strategy on cholesterol and fatty acids of the ground carcass and Longissimus muscle of beef steers. J Anim Sci 1997; 75(6):1525–1533.
  • Ouchi N, Higuchi A, Ohashi K, et al. SFRP5 is an anti-inflammatory adipokine that modulates metabolic dysfunction in obesity. Science 2010; 329(5990):454–457.
  • Suzuki H, Watkins D.N., Jair K.W., et al. Epigenetic inactivation of SFRP genes allows constitutive WNT signaling in colorectal cancer. Nat Genet. 2004;36(4):417–422.
  • Hotamisligil GS. Inflammation and metabolic disorder. Nature 2006; 444(7121): 860–867.
  • He B, Lee A.Y., Dadfarmay S., et al. Secreted frizzled-related protein 4 is silenced by hypermethylation and induces apoptosis in β-catenin-deficient human mesothelioma cells. Cancer Res 2005; 65(3):743–748.
  • Lv C, Jiang Y, Wang H, et al. SFRP5 expression and secretion in adipocytes are up-regulated during differentiation and are negatively correlated with insulin resistance. Cell Biol Int 2012; 36(9):851–855.
  • Chatani N, Kamada Y, Kizu T, et al. Secreted frizzled-related protein 5 (SFRP5) decreases hepatic stellate cell activation and liver fibrosis. Liver Int 2015; 35(8):2017–2026.
  • Cui, HX, Zheng MQ, Liu RR, et al. Liver dominant expression of fatty acid synthase (FAS) gene in two chicken breeds during intramuscular-fat development. Mol Biol Rep 2012; 39(4):3479–3484.
  • Zerehdaran S, Vereijken AL, Van Arendonk JA, et al. Estimation of genetic parameters for fat deposition and carcass traits in broilers. Poult Sci 2004; 83(4):521–525.
  • Livak KJ, Schmittgen TD. Analysis of relative gene expression data using real-time quantitative PCR and the 2−ΔΔCT method. Methods 2001; 25(4):402–408.
  • Stuckenholz C, Lu L, Thakur PC, et al. SFRP5 modulates both wnt and bmp signaling and regulates gastrointestinal organogensis in the zebrafish, danio rerio. PLoS ONE 2013; 8(4):e62470.
  • Li Y, Rankin SA, Sinner D, et al. SFRP5 coordinates foregut specification and morphogenesis by antagonizing both canonical and noncanonical Wnt11 signaling. Genes Dev 2008; 22(21):3050–3063.
  • Zhao C, Bu X, Zhang N, et al. Downregulation of SFRP5 expression and its inverse correlation with those of MMP-7 and MT1-MMP in gastric cancer. BMC Cancer 2009; 9:224.
  • Cheng L, Zhang D, Chen B. Declined plasma SFRP5 concentration in patients with type 2 diabetes and latent autoimmune diabetes in adults. Pak J Med Sci 2015; 31(3):602–605.
  • Chang JT, Esumi N, Moore K, et al. Cloning and characterization of a secreted frizzled-related protein that is expressed by the retinal pigment epithelium. Hum Mol Genet 1999; 8(4):575–583.
  • Bovolenta P, Esteve P, Ruiz JM, et al. Beyond Wnt inhibition: new functions of secreted Frizzled-related proteins in development and disease. J Cell Sci 2008; 121:737–746.
  • Cho HJ, Park J, Lee HW, et al. Regulation of adipocyte differentiation and insulin action with rapamycin. Biochem Bioph Res Co 2004; 321(4):942–948.
  • Koza RA, Nikonova L, Hogan J, et al. Changes in gene expression foreshadow diet-induced obesity in genetically identical mice. PLoS Genet 2006; 2(5):e81.
  • Mori H, Prestwich TC, Reid MA, et al. Secreted frizzled-related protein 5 suppresses adipocyte mitochondrial metabolism through WNT inhibition. J Clin Invest 2012; 122(7):2405–2416.
  • Lagathu C, Christodoulides C, Virtue S, et al. Dact1, a nutritionally regulated preadipocyte gene, controls adipogenesis by coordinating the Wnt/β-catenin signaling network. Diabetes 2009; 58(3):609–619.
  • Jeong JY, Kim JS, Nguyen TH, et al. Wnt/β-catenin signaling and adipogenic genes are associated with intramuscular fat content in the longissimus dorsi muscle of Korean cattle. Anim Genet 2013; 44(6):627–635.
  • Abiola M, Favier M, Christodoulou-Vafeiadou E, et al. Activation of Wnt/beta-catenin signaling increases insulin sensitivity through a reciprocal regulation of Wnt10b and SREBP-1c in skeletal muscle cells. PLoS ONE 2009; 4(12):e8509.
  • Rulofson IC, Majeti JZ, Xiong Y, et al. Inhibition of secreted frizzled-related protein 5 improves glucose metabolism. Am J Physiol-Endoc M 2014; 307(12):E1144–52.
  • Carstensen M, Wiza C, Röhrig K, et al. Effect of SFRP5 on cytokine release and insulin action in primary human adipocytes and skeletal muscle cells. PLoS ONE 2014; 9(1):e85906.
  • Schulte DM, Müller N, Neumann K, et al. Pro-Inflammatory wnt5a and anti-inflammatory SFRP5 are differentially regulated by nutritional factors in obese human subjects. PLoS ONE 2012; 7(2):e32437.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.