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首页> 外文期刊>Prostaglandins and Other Lipid Mediators >Relationship between concentrations of progesterone, oxytocin, noradrenaline, gene expression and protein level for their receptors in corpus luteum during estrous cycle in the cow.
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Relationship between concentrations of progesterone, oxytocin, noradrenaline, gene expression and protein level for their receptors in corpus luteum during estrous cycle in the cow.

机译:黄牛期动情周期黄体酮,催产素,去甲肾上腺素浓度,基因表达及其受体蛋白水平之间的关系。

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The aim of these studies was to evaluate of the relationship between luteal concentrations of oxytocin (OT), noradrenaline (NA), progesterone (P4), oxytocin receptors (OT-R) and beta(2)-adrenoreceptors (beta(2)-R) gene expression and their protein level throughout the estrous cycle in cattle. Corpora lutea (CL) collected during days 1-5, 6-10, 11-16 and 17-21 of the estrous cycle were used in these studies. Concentrations of P4, OT and NA were determined in tissue extracts. Gene expression and protein level for OT-R and beta(2)-R were investigated by RT-PCR and Western blot, respectively. Luteal concentration of P4 was higher (P<0.01) on days 6-10 and 11-16 than during days 1-5 and 17-20 of the estrous cycle. Concentration of OT was the highest on days 1-5 and 6-10 of the estrous cycle. This concentration decreased (P<0.01) during days 11-16 reaching the lowest level (P<0.001) on days 17-20 as opposed to days 1-10 of the estrous cycle. Expression of OT-R mRNA was lower on days 6-16 (P<0.05) followed by its increase on days 17-20 as opposed to the expression observed on days 1-5. Expression of OT-R mRNA was negatively correlated (P<0.05) with the profile of OT-R protein level. This latter parameter was the lowest on days 17-20 and 1-5, and the highest on days 6-10 and 11-16. Oxytocin concentration was negatively correlated (P<0.05) with expression of OT-R mRNA and positively correlated (P<0.001) with OT-R protein level. This protein level was only correlated with P4 (r=0.59; P<0.05). Concentration of OT was positively correlated with level of P4 (P<0.001). Concentration of NA was the highest on days 1-5 of the estrous cycle, whereas it was similar or lower (P<0.05) on days 6-21. Expression of mRNA for beta(2)-R was the lowest on days 1-5 and was highly increased (P<0.05) on days 6-16. The expression was the highest (P<0.001) on days 17-21 compared to all others group of the estrous cycle. Protein level for beta(2)-R was the highest on days 1-5 and decreased (P<0.05) on days 6-10 and 11-16. The expression was the lowest on days 17-20 compared to the beta(2)-R protein level in CL from all others stages of the estrous cycle. Protein level for beta(2)-R was positively correlated (P<0.05) with the OT concentration. Expression of mRNA for beta(2)-R was negatively correlated (P<0.001) with level of beta(2)-R protein. No correlation was found between beta(2)-R mRNA expression and NA concentration or between NA and P4 concentrations. Results presented in this study suggest an evident relationship between OT and NA and may play an important role in the regulation of luteal steroidogenesis during all stages of the estrous cycle.
机译:这些研究的目的是评估催产素(OT),去甲肾上腺素(NA),孕酮(P4),催产素受体(OT-R)和β(2)-肾上腺素受体(β(2)- R)基因表达及其在整个动情周期中的蛋白质水平。在这些研究中使用了在发情周期的第1-5、6-10、11-16和17-21天收集的黄体(CL)。测定组织提取物中的P4,OT和NA浓度。分别通过RT-PCR和Western blot研究OT-R和beta(2)-R的基因表达和蛋白质水平。在动情周期的第1-5天和第17-20天,P4的黄体总浓度高于(P <0.01)(P <0.01)。在发情周期的1-5天和6-10天,OT的浓度最高。与动情周期的第1-10天相比,该浓度在第11-16天下降(P <0.01),达到第17-20天的最低水平(P <0.001)。与在1-5天观察到的表达相反,OT-R mRNA的表达在第6-16天降低(P <0.05),然后在17-20天升高。 OT-R mRNA的表达与OT-R蛋白水平的分布呈负相关(P <0.05)。后一个参数在17-20和1-5天最低,在6-10和11-16天最高。催产素浓度与OT-R mRNA表达呈负相关(P <0.05),与OT-R蛋白水平呈正相关(P <0.001)。该蛋白质水平仅与P4相关(r = 0.59; P <0.05)。 OT浓度与P4水平呈正相关(P <0.001)。在动情周期的第1-5天,NA浓度最高,而在第6-21天,NA浓度相似或更低(P <0.05)。 beta(2)-R的mRNA表达在1-5天最低,在6-16天高度增加(P <0.05)。与动情周期的所有其他组相比,该表达在第17-21天最高(P <0.001)。 beta(2)-R的蛋白质水平在1-5天最高,在6-10天和11-16天下降(P <0.05)。与动情周期所有其他阶段的CL中的beta(2)-R蛋白水平相比,该表达在17-20天最低。 β(2)-R的蛋白质水平与OT浓度呈正相关(P <0.05)。 beta(2)-R的mRNA表达与beta(2)-R蛋白质水平呈负相关(P <0.001)。在beta(2)-R mRNA表达与NA浓度之间或NA与P4浓度之间未发现相关性。这项研究提出的结果表明,OT和NA之间存在明显的关系,并且可能在发情周期的所有阶段中都在黄体类固醇生成的调节中起重要作用。

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