Literature DB >> 28191600

Molecular characterisation of tumour necrosis factor alpha and its potential connection with lipoprotein lipase and peroxisome proliferator-activated receptors in blunt snout bream (Megalobrama amblycephala).

Man Zhou1, Hai-Feng Mi2, Wen-Bin Liu1, Ye-Yang Wu2, Kai-Zhou Wang1, Guang-Zhen Jiang3.   

Abstract

Tumour necrosis factor alpha (TNF-α) is one kind of cytokines which is related to inflammation and lipid metabolism. TNF-α cDNA was cloned from the liver of blunt snout bream (Megalobrama amblycephala) through real-time polymerase chain reaction (PCR) and rapid amplification of cDNA ends (RACE) methods. The full-length cDNA of TNF-α covered 1467 bp, with an open reading frame (ORF) of 723 bp, which encodes 240 amino acids. It possessed the TNF family signature IIIPDDGIYFVYSQ. After the lipopolysaccharide (LPS) challenge test, a graded tissue-specific expression pattern of TNF-α was observed and there was high expression abundance in the kidney, brain and liver. After 8 weeks feeding trial, liver samples, two groups fed with 6% and 11% lipid levels, were collected. The results showed that, for fish fed with high-fat diet, the triglyceride of serum and lipid content of liver were elevated. Furthermore, TNF-α and peroxisome proliferator-activated receptors (PPARα, β) mRNA expression of fish fed 11% lipid diet were significantly up-regulated (p < 0.05). Lipoprotein lipase (LPL) and PPARγ mRNA expression of fish fed 11% lipid lever diet were significantly decreased compared to those of fish fed 6% (p < 0.05). The differences between the various expression of related genes in the high and low fat groups demonstrated that TNF-α played a key role in lipid metabolism, which may have an influence on fat metabolism through reducing fat synthesis and strengthening the β-oxidation of fatty acid. These discrepancies warrant further research.

Entities:  

Keywords:  Gene expression; Lipoprotein lipase (LPL); Megalobrama amblycephala; Peroxisome proliferator-activated receptors (PPARs); Tumour necrosis factor alpha (TNF-α)

Mesh:

Substances:

Year:  2017        PMID: 28191600     DOI: 10.1007/s13353-017-0390-9

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


  43 in total

1.  Molecular characterization of peroxisome proliferator-activated receptors (PPARs) and their gene expression in the differentiating adipocytes of red sea bream Pagrus major.

Authors:  Hiromi Oku; Tetsuya Umino
Journal:  Comp Biochem Physiol B Biochem Mol Biol       Date:  2008-07-18       Impact factor: 2.231

2.  Blood chemistry and histological properties of wild and cultured sea bass (Dicentrarchus labrax) in the North Adriatic Sea.

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Journal:  Vet Res Commun       Date:  2005-11       Impact factor: 2.459

3.  Profiling gene transcription in vivo reveals adipose tissue as an immediate target of tumor necrosis factor-alpha: implications for insulin resistance.

Authors:  Hong Ruan; Philip D G Miles; Christine M Ladd; Kenneth Ross; Todd R Golub; Jerrold M Olefsky; Harvey F Lodish
Journal:  Diabetes       Date:  2002-11       Impact factor: 9.461

4.  Cloning and expression analysis of rainbow trout Oncorhynchus mykiss tumour necrosis factor-alpha.

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Journal:  Eur J Biochem       Date:  2001-03

5.  Human tumor necrosis factor alpha influences rainbow trout Oncorhynchus mykiss leucocyte responses.

Authors:  L J Hardie; L H Chappell; C J Secombes
Journal:  Vet Immunol Immunopathol       Date:  1994-01       Impact factor: 2.046

Review 6.  Lipolytic enzymes and plasma lipoprotein metabolism.

Authors:  P Nilsson-Ehle; A S Garfinkel; M C Schotz
Journal:  Annu Rev Biochem       Date:  1980       Impact factor: 23.643

7.  Peroxisome-proliferator-activated receptor delta activates fat metabolism to prevent obesity.

Authors:  Yong-Xu Wang; Chih-Hao Lee; Sambath Tiep; Ruth T Yu; Jungyeob Ham; Heonjoong Kang; Ronald M Evans
Journal:  Cell       Date:  2003-04-18       Impact factor: 41.582

8.  Hepatic gene expression profiles in a long-term high-fat diet-induced obesity mouse model.

Authors:  Sujong Kim; Insuk Sohn; Joon-Ik Ahn; Ki-Hwan Lee; Yeon Sook Lee; Yong Sung Lee
Journal:  Gene       Date:  2004-09-29       Impact factor: 3.688

Review 9.  Peroxisome proliferator-activated receptor alpha target genes.

Authors:  S Mandard; M Müller; S Kersten
Journal:  Cell Mol Life Sci       Date:  2004-02       Impact factor: 9.261

10.  Activation of TRPV1 prevents OxLDL-induced lipid accumulation and TNF-α-induced inflammation in macrophages: role of liver X receptor α.

Authors:  Jin-Feng Zhao; Li-Chieh Ching; Yu Ru Kou; Shing-Jong Lin; Jeng Wei; Song-Kun Shyue; Tzong-Shyuan Lee
Journal:  Mediators Inflamm       Date:  2013-06-26       Impact factor: 4.711

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  4 in total

1.  Molecular cloning of adipose triglyceride lipase (ATGL) gene from blunt snout bream and its expression after LPS-induced TNF-α factor.

Authors:  Yong-Jun Dai; Wen-Bin Liu; Xiang-Fei Li; Man Zhou; Chao Xu; Yu Qian; Guang-Zhen Jiang
Journal:  Fish Physiol Biochem       Date:  2018-04-29       Impact factor: 2.794

Review 2.  Fish TNF and TNF receptors.

Authors:  Yaoguo Li; Tiaoyi Xiao; Jun Zou
Journal:  Sci China Life Sci       Date:  2020-07-24       Impact factor: 6.038

3.  In Vivo Effects of Lipopolysaccharide on Peroxisome Proliferator-Activated Receptor Expression in Juvenile Gilthead Seabream (Sparus Aurata).

Authors:  Efthimia Antonopoulou; Elisavet Kaitetzidou; Barbara Castellana; Nikolas Panteli; Dimitrios Kyriakis; Yoryia Vraskou; Josep V Planas
Journal:  Biology (Basel)       Date:  2017-09-25

4.  The Mechanism of Lipopolysaccharide Escaping the Intestinal Barrier in Megalobrama amblycephala Fed a High-Fat Diet.

Authors:  Yong-Jun Dai; Wen-Bin Liu; Kenneth Prudence Abasubong; Ding-Dong Zhang; Xiang-Fei Li; Kang Xiao; Xi Wang; Guang-Zhen Jiang
Journal:  Front Nutr       Date:  2022-04-07
  4 in total

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