Expression of Selenoprotein Genes Is Affected by Heat Stress in IPEC-J2 Cells

被引:0
作者
Lei Cao
Jiayong Tang
Qiang Li
Jingyang Xu
Gang Jia
Guangmang Liu
Xiaoling Chen
Haiying Shang
Jingyi Cai
Hua Zhao
机构
[1] Sichuan Agricultural University,Animal Nutrition Institute
[2] Sichuan Provincial General Station for Animal Husbandry,undefined
来源
Biological Trace Element Research | 2016年 / 172卷
关键词
Selenoprotein; Expression; Heat stress; IPEC-J2;
D O I
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中图分类号
学科分类号
摘要
The aim of this study was to explore the impacts of heat stress (HS) on expressions of selenoprotein genes in IPEC-J2 cells. Cells were cultured with 5 % CO2-humidified chamber at 37 °C until the cells grew to complete confluence and then exposed to a mild hyperthermia at 41.5 °C (HS) or 37 °C (control) for another 24 h, finally harvested for total RNA or protein extraction. Real-time quantitative PCRs (qPCRs) were performed to compare gene expression of 25 selenoprotein genes, 3 tight junction-related genes, and 10 inflammation-related genes. Protein expressions of heat shock protein 70 (Hsp70) and selenoprotein X and P (SelX and SelP) were also investigated by Western blot. The results showed that HS up-regulated (P < 0.05) Hsp70 and one tight junction-related gene [zonula occludens-1 (Zo-1)] in IPEC-J2 cells. At the same time, HS up-regulated (P < 0.05) 4 selenoprotein genes (Gpx3, Dio2, Selk, Sels) and three inflammation-related genes (Il-6, Icam-1, Tgf-β) and down-regulated (P < 0.05 or as indicated) six selenoprotein genes (Gpx2, Gpx6, Txnrd1, Selh, Selm, Selx) and three inflammation-related genes (Ifn-β, Mcp-1, Tnf-α) in the cells. HS also exhibited impacts on protein expressions, which up-regulated Hsp70, down-regulated SelX, and showed no effect on SelP in IPEC-J2 cells. Our results showed that HS affected the expression of inflammation-related genes and up-regulated gene and protein expressions of Hsp70. The changes of so many selenoprotein genes expression implied a potential link between selenoprotein genes and HS. Moreover, the results provided by this IPEC-J2 model may be used to further study the interactive mechanisms between selenoprotein function and potential intestinal damage induced by HS.
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页码:354 / 360
页数:6
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[1]  
Neimann-Sorensen AT(1987)Bioclimatology and the adaptation of livestock World Anim Sci B5 64-73
[2]  
Derek E(2010)Metabolic and hormonal acclimation to heat stress in domesticated ruminants Animal 4 1167-1183
[3]  
Bernabucci U(2010)Effects of heat stress on energetic metabolism in lactating Holstein cows J Dairy Sci 93 644-655
[4]  
Lacetera N(2013)Effects of heat stress on postabsorptive metabolism and energetics Annu Rev Anim Biosci 1 311-337
[5]  
Baumgard LH(2014)Performance traits and immune response of broiler chicks treated with zinc and ascorbic acid supplementation during cyclic heat stress Int J Biometeorol 58 2153-2157
[6]  
Rhoads RP(2015)Heat stress inhibits proliferation, promotes growth, and induces apoptosis in cultured Lantang swine skeletal muscle satellite cells J Zhejiang Univ Sci B 16 549-559
[7]  
Ronchi B(2003)Economic losses from heat stress by US livestock industries J Dairy Sci 86 E52-E77
[8]  
Wheelock JB(2010)Seasonal effects on sow herds: Industry experience and management strategies J Anim Sci 88 9-E108
[9]  
Rhoads RP(2009)Stress-induced gastrointestinal barrier dysfunction and its inflammatory effects J Anim Sci 87 E101-512
[10]  
Vanbaale MJ(2013)Heat stress reduces intestinal barrier integrity and favors intestinal glucose transport in growing pigs PLoS One 8 e70215-164