数字农科院2.0

Identification of CD14 transcript in blood polymorphonuclear neutrophil leukocytes and functional variation in Holsteins

文献类型: 外文期刊

作者: Huang, J. M.;Hao, H. S.;Zhu, H. B.;Huang, J. M.;Wang, X. G.;Jiang, Q.;Sun, Y.;Yang, C. H.;Ju, Z. H.;Wang, C. F.;Zhong, J. F.

作者机构:

关键词: CD14;Splice variant;Functional SNP;Cow;Mastitis

期刊名称: GENETICS AND MOLECULAR RESEARCH

ISSN: 1676-5680

年卷期: 2016 年 15 卷 2 期

页码:

收录情况: SCI

摘要: Polymorphonuclear neutrophil (PMN) leukocytes are primary phagocytic cells of the bovine mammary gland and a first line of defense against invading pathogens during bovine mastitis infection. Cluster of differentiation 14 (CD14) is mainly expressed in macrophages and neutrophils and acts as a co-receptor that binds bacterial lipopolysaccharide (LPS) and recruits PMNs to CD14-LPS complexes in mammary epithelial cells. In this study, we identified a novel splice variant in PMNs, named CD14-SV, characterized by a deleted region from c. 143-579 nt compared to the CD14 reference mRNA sequence. Moreover, a single nucleotide polymorphism (c. 523 A>G) in exon 2 of CD14 was identified and found to modify the secondary structure and hydrophilicity of the CD14 protein. Association analysis also showed that the milk somatic cell score, an indicator of mastitis, of cows with the GG genotype was lower than that of cows with the AA and AG genotypes. Our findings suggest that the expression of CD14 in bovine blood PMNs is regulated by alternative splicing, and that CD14-SV is a candidate functional marker that may influence mastitis-resistance in dairy cows.

分类号:

  • 相关文献

[1]Comparative Proteomic Analysis of Milk-Derived Extracellular Vesicles from Dairy Cows with Clinical and Subclinical Mastitis. Mengling Wang,Meng Cai,Xiaoyan Zhu,Xuemei Nan,Benhai Xiong,Liang Yang. 2023

[2]Molecular characterization of a CpTRIM35-like protein and its splice variants from whitespotted bamboo shark (Chiloscyllium plagiosum). Zhang, Xinshang,Zhao, Heng,Chen, Yeyu,Luo, Huiying,Yao, Bin.

[3]Analysis of 22 Elements in Milk, Feed, and Water of Dairy Cow, Goat, and Buffalo from Different Regions of China. Zhou, Xuewei,Qu, Xueyin,Zhao, Shengguo,Wang, Jiaqi,Li, Songli,Zheng, Nan,Zhou, Xuewei,Qu, Xueyin,Zhao, Shengguo,Wang, Jiaqi,Li, Songli,Zheng, Nan.

[4]Accumulation and Depletion of Cadmium in the Blood, Milk, Hair, Feces, and Urine of Cows During and After Treatment. Su, Chuanyou,Zhang, Junmin,Zhao, Qingyu,Su, Chuanyou,Li, Zhentian,Liu, Kaidong,Sun, Youde,Wang, Jianhua.

[5]Comparative proteomics of milk fat globule membrane in different species reveals variations in lactation and nutrition. Lu, Jing,Zhang, Weiqing,Liu, Lu,Pang, Xiaoyang,Zhang, Shuwen,Lv, Jiaping,Wang, Xinyu,Wang, Xinyu.

[6]Proteome profile of bovine ruminal epithelial tissue based on GeLC-MS/MS. Yang, Yongxin,Wang, Jiaqi,Yuan, Tingjie,Bu, Dengpan,Yang, Jinhui,Sun, Peng,Yang, Yongxin.

[7]Prophylactic strategy with herbal remedy to reduce puerperal metritis risk in dairy cows: A randomized clinical trial. Cui, Dongan,Wang, Shengyi,Wang, Lei,Wang, Hui,Li, Xia,Liu, Yongming.

[8]The administration of Sheng Hua Tang immediately after delivery to reduce the incidence of retained placenta in Holstein dairy cows. Cui, Dongan,Wang, Xuezhi,Wang, Lei,Wang, Xurong,Zhang, Jingyan,Qin, Zhe,Li, Jianxi,Yang, Zhiqiang.

[9]A Rapid Analytical Method Of M.ajor Milk Proteins By R eversed-Phase High-Performance Liquid Chromatography. Ma, L, Yang, YX, Chen, JT, Wang, JQ, Bu, DP. 2017

[10]Elimination of Cefquinome Sulfate Residue in Cow’s Milk after Intrauterine Infusion. Chunshuang Liu,Mingyue Han,Honglei Wang,Xiaojie Chen,Yaoxin Tang,Daokang Zhang,Xiubo Li,Yiming Liu. 2023

[11]The Dynamic Transcription Profiles of Proliferating Bovine Ovarian Granulosa When Exposed to Increased Levels of β-Hydroxybutyric Acid. Jianfei Gong,Shanjiang Zhao,Nuo Heng,Yi Wang,Zhihui Hu,Huan Wang,Huabin Zhu. 2022

[12]Effects of Heavy Metal Exposure from Leather Processing Plants on Serum Oxidative Stress and the Milk Fatty Acid Composition of Dairy Cows: A Preliminary Study. Su, Chuanyou,Qu, Xueyin,Gao, Yanan,Zhou, Xuewei,Yang, Xue,Zheng, Nan. 2022

[13]Efficacy of an herbal formula Guixiong Yimu San in preventing retained placenta and improving reproductive performance in cows. Dongan Cui,Lei Wang,Ling Wang,Jiongjie He,Yuqiong Li,Zhounian Zhang,Shengyi Wang. 2024

[14]Replacing Dietary Alfalfa Hay With Nettle Benefits Rumen pH Balance and Microbiota in Rumen and Feces With Minimal Effects on Performance and Digestibility in Dairy Cows. 张千,,张腾龙,,塔娜,,张继泽,,丁赫,,张晓庆. 2023

[15]Species-specific variations in milk fat globule membrane lipid composition of colostrum from yak, buffalo, and cow: A UHPLC-Qtrap-MS targeted lipidomics study. Yuzhuo Wang,Changhui Li,Jiaxiang Huang,Qingkun Zeng,Ling Li,Pan Yang,Pengjie Wang,Min Chu,Jie Luo,Fazheng Ren,Hao Zhang. 2025

[16]Identification mutation of the CACNA2D1 gene and its effect on somatic cell score in cattle. Deng, Gui-xin,Yuan, Zheng-rong,Gao, Xue,Li, Jun-ya,Chen, Jin-bao,Gao, Hui-jiang,Xu, Shang-zhong. 2011

[17]Inflammatory Response of Peripheral Blood Mononuclear Cells Post Intramammary Challenge with Staphylococcus aureus in Dairy Cows. Liu, Li,Yuan, Zhengrong,Chen, Cui,Zhang, Limin,Chen, Xiaojie,Liu, Xidong,Gao, Xue,Li, Junya,Gao, Huijiang,Zhang, Lupei,Xu, Shangzhong. 2012

[18]Comparative proteomic changes of differentially expressed whey proteins in clinical mastitis and healthy yak cows. Li, X.,Du, G. Z.,Li, X.,Ding, X. Z.,Liu, Y. M.,Wan, Y. L.. 2014

[19]Investigation on BRCA1 SNPs and its effects on mastitis in Chinese commercial cattle. Yuan, Zhengrong,Li, Junya,Li, Jiao,Zhang, Lupei,Gao, Xue,Gao, Hui Jiang,Xu, Shangzhong,Yuan, Zhengrong.

[20]Comparative proteomics analysis of plasma proteins during the transition period in dairy cows with or without subclinical mastitis after calving. Yang, Y. X.,Wang, J. Q.,Bu, D. P.,Li, S. S.,Yuan, T. J.,Zhou, L. Y.,Yang, J. H.,Sun, P.,Yang, Y. X..

作者其他论文 更多>>