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Hepatic purinergic signaling gene network expression and its relationship with inflammation and oxidative stress biomarkers in blood from peripartal dairy cattle

机译:围产期奶牛血液中肝嘌呤能信号基因网络表达及其与炎症和氧化应激生物标志物的关系

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摘要

The liver plays a central role in allowing dairy cattle to make a successful transition into lactation. In liver, as in other tissues, extracellular nucleotides and nucleo-sides trigger cellular responses through adenosine and ATP receptors. Adenosine triphosphate and certain nucleotides serve as signals that can heighten purinergic receptor activation in several pathologic processes. We evaluated the mRNA expression of genes associated with the purinergic signaling network in liver tissue during the peripartal period. Seven multiparous Holstein cows were dried off at d -50 relative to expected parturition and fed a controlled-energy diet (net energy for lactation = 1.24 Mcal/kg of DM) for ad libitum intake during the entire dry period. After calving, all cows were fed a common lactation diet (net energy for lactation = 1.65 Mcal/kg of DM) until 30 DIM. Biopsies of liver were harvested at d -10, 7, and 21 for mRNA expression of 9 purinergic receptors, 7 ATP and adenosine transport channels, and 10 enzymes associated with ATP hydrolysis. Blood collected at d -21, -10, 7, 14, and 21 was used to measure concentrations of inflammation and oxidative stress biomarkers. The expression of type 1 purinergic receptors (AD0RA2A and ADORA3), several nucleoside hydrolases [ectonucleoside triphosphate diphosphohy-drolase 7 (ENTPD7), ectonucleotide pyrophosphatase/ phosphodiesterase 2 (ENPP2), ENPP3, and adenosine deaminase (ADA)], and a type 2 purinergic receptor (P2RX7) was downregulated after calving. In contrast, the expression of type 2 purinergic receptors (P2RX4 and PR2Y11), an ATP release channel (gap junction hemichannel GJB1), and an adenosine uptake protein (SLC29A.1) followed the opposite response, increasing after calving and remaining elevated through 21 d. Haptoglobin, ceruloplasmin, and reactive oxygen metabolite concentrations increased gradually from d -21 d through at least d 7. The opposite response was observed for albumin, paraoxonase, α-tocopherol, and nitric oxide, which decreased gradually to a nadir at 7 and 14 d. Our results suggest that alterations after calving of the expression of hepatic purinergic signaling genes could be functionally important because in nonruminants, they play roles in bile formation, glucose metabolism, cholesterol uptake, inflammation, and ste-atosis. The correlation analysis provided evidence of a link between purinergic signaling genes and biomarkers of inflammation and oxidative stress.
机译:肝脏在使奶牛成功过渡到泌乳中起着核心作用。与其他组织一样,在肝脏中,胞外核苷酸和核苷通过腺苷和ATP受体触发细胞反应。三磷酸腺苷和某些核苷酸可在多个病理过程中增强嘌呤能受体的激活。我们评估了围产期肝组织中嘌呤能信号网络相关基因的mRNA表达。相对于预期的分娩,在d -50处将七头多头荷斯坦奶牛干燥,并在整个干燥期间自由采食受控能量饮食(泌乳净能量= 1.24 Mcal / kg DM)。产犊后,给所有母牛饲喂普通的泌乳日粮(泌乳净能量= 1.65 Mcal / kg DM),直到30 DIM。在第-10、7和21天收获肝活检组织,以检测9个嘌呤能受体,7个ATP和腺苷转运通道以及10种与ATP水解有关的酶的mRNA表达。在第-21,-10、7、14和21天收集的血液用于测量炎症和氧化应激生物标记物的浓度。 1型嘌呤能受体(AD0RA2A和ADORA3),几种核苷水解酶[外核苷三磷酸二磷酸脱氢酶7(ENTPD7),外核苷酸焦磷酸酶/磷酸二酯酶2(ENPP2),ENPP3和腺苷脱氨酶(ADA)2]的表达产犊后嘌呤能受体(P2RX7)下调。相反,2型嘌呤能受体(P2RX4和PR2Y11),ATP释放通道(间隙连接半通道GJB1)和腺苷摄取蛋白(SLC29A.1)的表达遵循相反的响应,在产犊后增加并一直升高到21岁。 d。触珠蛋白,铜蓝蛋白和活性氧代谢产物的浓度从d -21 d到至少d 7逐渐升高。白蛋白,对氧磷酶,α-生育酚和一氧化氮的反应相反,在7和14时逐渐下降至最低点。 d。我们的结果表明,产犊后肝嘌呤能信号基因的表达改变可能在功能上很重要,因为在非反刍动物中,它们在胆汁形成,葡萄糖代谢,胆固醇摄取,炎症和脂肪变性中起作用。相关性分析提供了嘌呤能信号基因与炎症和氧化应激的生物标记之间存在联系的证据。

著录项

  • 来源
    《Journal of dairy science》 |2014年第2期|861-873|共13页
  • 作者单位

    Department of Agricultural Biotechnology, Research Institute for Agriculture and Life Sciences, College of Agriculture and Life Sciences, Seoul National University, Daehak-dong, Kwanak-gu, Seoul 151-742, Republic of Korea,Mammalian NutriPhysioGenomics, Department of Animal Sciences, and Division of Nutritional Sciences, University of Illinois, 1207 West Gregory Drive, Urbana 61801;

    Mammalian NutriPhysioGenomics, Department of Animal Sciences, and Division of Nutritional Sciences, University of Illinois, 1207 West Gregory Drive, Urbana 61801;

    Empresa Brasileira de Pesquisa Agropecuaria (Embrapa), Rondonia, BR 364, Km 5.5, Zona Rural, Caixa Postal 127, CEP 76815-800, Porto Velho, Rondonia, Brazil;

    Universidade Federal de Pelotas, NUPEEC, Departamento Clinicas Veterinaria, Campus Universitario, 96010-900, Pelotas, Rio Grande do Sul, Brazil;

    Istituto di Zootecnica, Facolta di Agraria, Universita Cattolica del Sacro Cuore, 29122 Piacenza, Italy;

    Istituto di Zootecnica, Facolta di Agraria, Universita Cattolica del Sacro Cuore, 29122 Piacenza, Italy;

    Mammalian NutriPhysioGenomics, Department of Animal Sciences, and Division of Nutritional Sciences, University of Illinois, 1207 West Gregory Drive, Urbana 61801;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    liver metabolism; transition cow; adenosine; adenosine triphosphate;

    机译:肝脏代谢过渡牛腺苷三磷酸腺苷;

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