Literature DB >> 29353404

DNA methylation rather than single nucleotide polymorphisms regulates the production of an aberrant splice variant of IL6R in mastitic cows.

Yan Zhang1,2, Xiuge Wang2, Qiang Jiang2, Haisheng Hao1, Zhihua Ju2, Chunhong Yang2, Yan Sun2, Changfa Wang2, Jifeng Zhong2, Jinming Huang3,4,5, Huabin Zhu6.   

Abstract

Interleukin-6 receptor-alpha (IL6R) interacts with IL6 and forms a ligand-receptor complex, which can stimulate various cellular responses, such as cell proliferation, cell differentiation, and activation of inflammatory processes. Both genetic mutation and epigenetic modification regulate gene transcription. We identified a novel splice variant of bovine IL6R, designated as IL6R-TV, which is characterized by the skipping of exon 2 of the NCBI-referenced IL6R gene (IL6R-reference). The expression levels of IL6R-TV and IL6R-reference transcripts were lower in normal mammary gland tissues. These transcripts play a potential role during inflammatory infection. We also detected two putative functional SNPs (g.19711 T > C and g.19731 G > C) located within the upstream 100 bp of exon 2. These SNPs formed two haplotypes (T-G and C-C). Two mutant pSPL3 exon-trapping plasmids (pSPL3-T-G and pSPL3-C-C) were transferred into the bovine mammary epithelial cells (MAC-T) and human embryonic kidney 293 T cells (HEK293T) to investigate the relationship between the two SNPs and the aberrant splicing of IL6R. DNA methylation levels of the alternatively spliced exon in normal and mastitis-infected mammary gland tissues were quantified through nested bisulfate sequencing PCR (BSP) and cloning sequencing. We found that DNA methylation regulated IL6R transcription. The DNA methylation level was high in mastitis-infected mammary gland tissues and stimulated IL6R expression, thereby promoting the inclusion of the alternatively spliced exon. The upregulated expression of the two transcripts was due to DNA methylation modification rather than genetic mutations.

Entities:  

Keywords:  Cattle; DNA methylation; IL6R; Mastitis; Single nucleotide polymorphism; Splice variant

Mesh:

Substances:

Year:  2018        PMID: 29353404      PMCID: PMC6045551          DOI: 10.1007/s12192-017-0871-0

Source DB:  PubMed          Journal:  Cell Stress Chaperones        ISSN: 1355-8145            Impact factor:   3.667


  50 in total

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2.  Genetic analysis of mastitis data with different models.

Authors:  D Hinrichs; J Bennewitz; E Stamer; W Junge; E Kalm; G Thaller
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3.  SNPSplicer: systematic analysis of SNP-dependent splicing in genotyped cDNAs.

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5.  Aberrant promoter methylation of the CD4 gene in peripheral blood cells of mastitic dairy cows.

Authors:  X S Wang; Y Zhang; Y H He; P P Ma; L J Fan; Y C Wang; Y I Zhang; D X Sun; S L Zhang; C D Wang; J Z Song; Y Yu
Journal:  Genet Mol Res       Date:  2013-12-04

Review 6.  Innate immune response of bovine mammary gland to pathogenic bacteria responsible for mastitis.

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7.  Genetic mutations potentially cause two novel NCF1 splice variants up-regulated in the mammary gland, blood and neutrophil of cows infected by Escherichia coli.

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8.  Inflammatory processes triggered by Helicobacter pylori infection cause aberrant DNA methylation in gastric epithelial cells.

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Journal:  Arthritis Res Ther       Date:  2015-09-04       Impact factor: 5.156

10.  Role of an SNP in Alternative Splicing of Bovine NCF4 and Mastitis Susceptibility.

Authors:  Zhihua Ju; Changfa Wang; Xiuge Wang; Chunhong Yang; Yan Sun; Qiang Jiang; Fei Wang; Mengjiao Li; Jifeng Zhong; Jinming Huang
Journal:  PLoS One       Date:  2015-11-24       Impact factor: 3.240

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2.  De Novo Transcriptome Sequencing Analysis of Goose (Anser anser) Embryonic Skin and the Identification of Genes Related to Feather Follicle Morphogenesis at Three Stages of Development.

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Review 3.  Sequence and Evolutionary Features for the Alternatively Spliced Exons of Eukaryotic Genes.

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5.  PGN and LTA from Staphylococcus aureus Induced Inflammation and Decreased Lactation through Regulating DNA Methylation and Histone H3 Acetylation in Bovine Mammary Epithelial Cells.

Authors:  Yongjiang Wu; Jingbo Chen; Yawang Sun; Xianwen Dong; Zili Wang; Juncai Chen; Guozhong Dong
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6.  Genome-Wide DNA Methylation Analysis of Mammary Gland Tissues From Chinese Holstein Cows With Staphylococcus aureus Induced Mastitis.

Authors:  Mengqi Wang; Yan Liang; Eveline M Ibeagha-Awemu; Mingxun Li; Huimin Zhang; Zhi Chen; Yujia Sun; Niel A Karrow; Zhangping Yang; Yongjiang Mao
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