Scientia Agricultura Sinica ›› 2011, Vol. 44 ›› Issue (20): 4279-4283.doi: 10.3864/j.issn.0578-1752.2011.20.016

• ANIMAL SCIENCE·RESOURCE INSECT • Previous Articles     Next Articles

The Expression of FcRn mRNA in Mammary Gland Epithelial Cells of Holstein Cows Treated with Different Concentrations of Thyroxine, Insulin, and Glucagon in Vitro

 HU  Xiao-Li, ZHANG  Chun-Lin, WANG  Jia-Qi, ZHAO  Sheng-Guo, ZHANG  Yu-Tao, BU  Deng-Pan, ZHOU  Ling-Yun   

  1. 1.中国农业科学院北京畜牧兽医研究所/动物营养学国家重点实验室
  • Received:2010-08-30 Online:2011-10-15 Published:2010-11-26

Abstract: 【Objective】The mRNA expression of FcRn was studied in Holstein Cows mammary gland epithelial cells treated with hormone by real-time PCR. 【Method】 FcRn mRNA expression of in vitro cultured mammary epithelial cells treated with different concentrations of thyroxine hormone (0.01, 0.1, 1 μmol•L-1), insulin (0.005, 0.1, 0.5 μmol•L-1) and glucagon (0.01, 0.1, 1 μmol•L-1), respectively, was determined.【Result】The results showed that the mRNA abundance of FcRn increased with the higher dose of thyroxine and glucagon significantly (P<0.05) in a certain range. However, the mRNA expression of FcRn was significantly lower when treated with 0.005 μmol•L-1 and 0.5 μmol•L-1 insulin than 0.1μmol•L-1 (P<0.05).【Conclusion】Thyroxine, insulin and glucagon can obviously change the level of FcRn mRNA, which provide a basis for further research of the change and influence of FcRn.

Key words: HolsteinCows, mammaryepithelialcells, hormone, real-timePCR, mRNA

[1]Raghavan M, Bjorkman P J. Fc receptors and their interactions with immunoglobulins. Annual Review of Cell and Developmental Biology, 1996, 12: 181-220.

[2]张春林, 王加启, 卜登攀, 魏宏阳, 杨永新, 董晓丽, 刘光磊, 周凌云, 赵国琦. 新生儿Fc受体研究进展. 生物技术通报, 2009, 9: 13-17.

Zhang C L, Wang J Q, Bu D P, Wei H Y, Yang Y X, Dong X L, Liu G L, Zhou L Y, Zhao G Q. Advances in research of neonatal Fc receptor. Biotechnology Bulletin, 2009, 9: 13-17. (in Chinese)

[3]Jones E A, Waldmann T A. The mechanism of intestinal uptake and transcellular transport of IgG in the neonatal rat. Journal of Clinical Investigation, 1972, 51(11): 2916-2927.

[4]Roopenian D C, Christianson G J, Sproule T J, Brown A C, Akilesh S, Jung N, Petkova S, Avanessian L, Choi E Y, Shaffer D J, Eden P A, Anderson C L. The MHC class I-like IgG receptor controls perinatal IgG transport, IgG homeostasis, and fate of IgG-Fc-coupled drugs. The Journal of Immunology, 2003, 170: 3528-3533.

[5]Cianga P, Medesan C, Richardson J A, Ghetie V, Ward E S. Identification and function of neonatal Fc receptor in mammary gland of lactating mice. European Journal of Immunology, 1999, 29: 2515-2523.

[6]Kim J, Mohanty S, Ganesan L P, Hua K, Jarjoura D, Hayton W L, Robinson J M, Anderson C L. FcRn in the yolk sac endoderm of mouse is required for IgG transport to fetus. The Journal of Immunology, 2009, 182(5): 2583-2589.

[7]Ward E S, Zhou J C, Ghetie V, Ober R J. Evidence to support the cellular mechanism involved in serum IgG homeostasis in humans. International Immunology, 2003, 15: 187-195.

[8]Mayer B, Zolnai A, Frenyó L V, Jancsik V, Szentirmay Z, Hammarström L, Kacskovics I. Redistribution of the sheep neonatal Fc receptor in the mammary gland around the time of parturition in ewes and its localization in the small intestine of neonatal lambs. Immunology, 2002, 107: 288-296.

[9]Mayer B, Doleschall M, Bender B, Bartyik J, Bösze Z, Frenyó L V, Kacskovics I. Expression of the neonatal Fc receptor (FcRn) in the bovine mammary gland. Journal of Dairy Research, 2005, 72: 107-112.

[10]Barrington G M, Besser T E, Gay C C, Davis W C, Reeves J J, McFadden T B. Effects of prolactin on in vitro expression of the bovine mammary immunoglobulin G1 receptor. Journal of Dairy Science, 1997, 80: 94-100.

[11]Barrington G M, McFaden T B, Huyler M T, Besser T E. Regulation of colostrogenesis in cattle. Livestock Production Science, 2001, 70: 95-104.

[12]Smith K L, Muir L A, Ferguson L C, Conrad H R. Selective transport of IgG1 into the mammary gland: role of estrogen and progesterone. Journal of Dairy Science, 1971, 54: 1886-1894.

[13]Martin G M, Wu S V, John H W. Hormonal control of intestinal Fc receptor gene expression and immunoglobulin transport in suckling rats. Journal of Clinical Investigation, 1993, 91(6): 2844-2849.

[14]Baumrucker C R, Wang Y, Liu W, Dechow C D. Characterization of the bovine mammary FcRn receptor in mammary cells in vitro. Journal of Dairy Science, 2009, 92: E-Sup i. pl. 1: 47.

[15]Gill R K, Mahmood S, Sodhi C P, Nagpaul J P, Mahmood A. IgG binding and expression of its receptor in rat intestine during postnatal development. Indian Journal of Biochemistry and Biophysics, 1999, 36: 252-257.

[16]王治国, 卜登攀, 王加启. 牛乳腺上皮细胞β-酪蛋白的检测及核型分析. 中国畜牧兽医, 2007, 34(2): 8-11.

 

Wang Z G, Bu D P, Wang J Q. The examination and nuclear analysis beta-casein for bovine mammary epithelial cells. China Animal Husbandry and Veterinary Medicine, 2007, 34(2): 8-11. (in Chinese)

[17]Hu H, Wang J Q, Bu D P, Wei H Y, Zhou L Y, Li F D, Loor J J. In vitro culture and characterization of a mammary epithelial cell line from Chinese Holstein Dairy Cows. Plos One, 2009, 4(11): 1-8.

[18]Svendsen L S, Westrom B R, Svendsen J, Ohlsson B G, Ekman R, Karlsson B W. Insulin involvement in intestinal macromolecular transmission and closure in neonatal pigs. Journal of Pediatric Gastroenterology and Nutrition, 1986, 5: 299-304.

[19]Wagner M S, Wajner S M, Maia A L, The role of thyroid hormone in testicular development and function. Journal of Endocrinology, 2008, 199(3): 351-365.

[20]Akers R M. Major advances associated with hormone and growth factor regulation of mammary growth and lactation in dairy cows. Journal of Dairy Science, 2006, 89: 1222-1234.

[21]Daba M B. FcRn expression, ligands binding properties and its regulation in human immune cells and hepatocytes. Thesis for the Master of Science Degree in Molecular Biosciences Main Field of Study in Immunology, 2007.

[22]Martin M G, Wu S V, Walsh J H. Ontogenetic development and distribution of antibody transport and Fc receptor mRNA expression in rat intestine. Digestive Diseases and Sciences, 1997, 42: 1062-1069.

[23]Halliday R. The effect of steroid hormones on the absorption of antibody by the young rat. Journal of Endocrinology, 1959, 18: 56-66.

[24]Morris B, Morris R. The effects of corticosterone and cortisone on the uptake of polyvinyl pyrrolidone and the transmission of immunoglobulin G by the small intestine in young rats. The Journal of Physiology, 1976, 254: 389-403.

[25]Capano G, Bloch K J, Schiffrin E J, Dascoli J A, Israel E J, Harmatz P R. Influence of the polyamine, spermidine, on intestinal maturation and dietary antigen uptake in the neonatal rat. Journal of Pediatric Gastroenterology and Nutrition, 1994, 19: 34-42
[1] LIU Xin,ZHANG YaHong,YUAN Miao,DANG ShiZhuo,ZHOU Juan. Transcriptome Analysis During Flower Bud Differentiation of Red Globe Grape [J]. Scientia Agricultura Sinica, 2022, 55(20): 4020-4035.
[2] SHA YueXia, HUANG ZeYang, MA Rui. Control Efficacy of Pseudomonas alcaliphila Strain Ej2 Against Rice Blast and Its Effect on Endogenous Hormones in Rice [J]. Scientia Agricultura Sinica, 2022, 55(2): 320-328.
[3] MA YuFeng,ZHOU ZhongXiong,LI YuTong,GAO XueQin,QIAO YaLi,ZHANG WenBin,XIE JianMing,HU LinLi,YU JiHua. Effects of Nitrogen Level and Form on Root Morphology of Mini Chinese Cabbage and Its Physiological Index [J]. Scientia Agricultura Sinica, 2022, 55(2): 378-389.
[4] ZHANG Jing,ZHANG JiYue,YUE YongQi,ZHAO Dan,FAN YiLing,MA Yan,XIONG Yan,XIONG XianRong,ZI XiangDong,LI Jian,YANG LiXue. LKB1 Regulates Steroids Synthesis Related Genes Expression in Bovine Granulosa Cells [J]. Scientia Agricultura Sinica, 2022, 55(10): 2057-2066.
[5] TAN YongAn,JIANG YiPing,ZHAO Jing,XIAO LiuBin. Expression Profile of G Protein-Coupled Receptor Kinase 2 Gene (AlGRK2) and Its Function in the Development of Apolygus lucorum [J]. Scientia Agricultura Sinica, 2021, 54(22): 4813-4825.
[6] WANG JunJie,TIAN Xiang,QIN HuiBin,WANG HaiGang,CAO XiaoNing,CHEN Ling,LIU SiChen,QIAO ZhiJun. Regulation Effects of Photoperiod on Growth and Leaf Endogenous Hormones in Broomcorn Millet [J]. Scientia Agricultura Sinica, 2021, 54(2): 286-295.
[7] ZHENG FengSheng,WANG HaiHua,WU QingTao,SHEN Quan,TIAN JianHong,PENG XiXu,TANG XinKe. Genome-Wide Identification of VQ Gene Family in Fagopyrum tataricum and Its Expression Profiles in Response to Leaf Spot Pathogens [J]. Scientia Agricultura Sinica, 2021, 54(19): 4048-4060.
[8] YU BaoJun,DENG ZhanZhao,XIN GuoSheng,CAI ZhengYun,GU YaLing,ZHANG Juan. Correlation Analysis of Inosine Monophosphate Specific Deposition Related LNC_003828-gga-miR-107-3P-MINPP1 in Jingyuan Chicken Muscle Tissue [J]. Scientia Agricultura Sinica, 2021, 54(19): 4229-4242.
[9] LI YanLin,SHAHID Iqbal,SHI Ting,SONG Juan,NI ZhaoJun,GAO ZhiHong. Isolation of PmARF17 and Its Regulation Pattern of Endogenous Hormones During Flower Development in Prunus mume [J]. Scientia Agricultura Sinica, 2021, 54(13): 2843-2857.
[10] ZHANG ZhiXing,MIN XiuMei,SONG Guo,CHEN Hua,XU HaiLong,LIN WenXiong. Identification of 14-3-3 Client Proteins in Rice Grains and Their Response to Exogenous Hormones During the Grain Filling Stage [J]. Scientia Agricultura Sinica, 2021, 54(12): 2523-2537.
[11] LIU HaiYing,FENG BiDe,RU ZhenGang,CHEN XiangDong,HUANG PeiXin,XING ChenTao,PAN YinYin,ZHEN JunQi. Relationship Between Phytohormones and Male Sterility of BNS and BNS366 in Wheat [J]. Scientia Agricultura Sinica, 2021, 54(1): 1-18.
[12] YaoQun WU,ShaoKang CHEN,XiHui SHENG,XiaoLong QI,XiangGuo WANG,HeMin NI,Yong GUO,ChuDuan WANG,Kai XING. Differential Expression of mRNA and lncRNA in Longissimus Dorsi Muscle of Songliao Black Pig and Landrace Pig Based on High-Throughput Sequencing Technique [J]. Scientia Agricultura Sinica, 2020, 53(4): 836-847.
[13] GUO MeiJun,BAI YaQing,GAO Peng,SHEN Jie,DONG ShuQi,YUAN XiangYang,GUO PingYi. Effect of MCPA on Leaf Senescence and Endogenous Hormones Content in Leaves of Foxtail Millet Seedlings [J]. Scientia Agricultura Sinica, 2020, 53(3): 513-526.
[14] GE Xia,XU Rui,LI Mei,TIAN JiaChun,LI ShouQiang,CHENG JianXin,TIAN ShiLong. Regulation Mechanism of Carvone on Seed Potato Sprouting [J]. Scientia Agricultura Sinica, 2020, 53(23): 4929-4939.
[15] MIAO JianJun,PENG ZhongLi,GAO YanHua,BAI Xue,XIE XinTing. Effects of Dietary Small Peptides on Production Performance and Expression of PepT1 mRNA in Digestive Tract of Fattening Yaks [J]. Scientia Agricultura Sinica, 2020, 53(23): 4950-4960.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!