首页> 美国卫生研究院文献>Frontiers in Physiology >Evaluation of Short and Long Term Cold Stress Challenge of Nerve Grow Factor Brain-Derived Neurotrophic Factor Osteocalcin and Oxytocin mRNA Expression in BAT Brain Bone and Reproductive Tissue of Male Mice Using Real-Time PCR and Linear Correlation Analysis
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Evaluation of Short and Long Term Cold Stress Challenge of Nerve Grow Factor Brain-Derived Neurotrophic Factor Osteocalcin and Oxytocin mRNA Expression in BAT Brain Bone and Reproductive Tissue of Male Mice Using Real-Time PCR and Linear Correlation Analysis

机译:实时荧光定量PCR和线性相关分析评估神经生长因子脑源性神经营养因子骨钙素和催产素mRNA在雄性小鼠BAT脑骨和生殖组织中的短期和长期冷应激挑战

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摘要

The correlation between the Ngf/p75ntr-Ntrk1 and Bdnf, Osteocalcin-Ost/Gprc6a and Oxytocin-Oxt/Oxtr genes, was challenged investigating their mRNA levels in 3 months-old mice after cold-stress (CS). Uncoupling protein-1 (Ucp-1) was used as positive control. Control mice were maintained at room temperature T = 25°C, CS mice were maintained at T = 4°C for 6 h and 5-days (N = 15 mice). RT-PCR experiments showed that Ucp-1 and Ngf genes were up-regulated after 6 h CS in brown adipose tissues (BAT), respectively, by 2 and 1.5-folds; Ucp-1 was upregulated also after 5-days, while Ngfr (p75ntr) and Ntrk1 genes were downregulated after 6 h and 5-days CS in BAT. NGF and P75NTR were upregulated in bone and testis following 5-days, and P75NTR in testis after 6 h CS. Bdnf was instead up-regulated in bone following 5-days CS and down-regulated in testis. OST was upregulated by 16 and 3-fold in bone and BAT, respectively, following 5-days CS. Gprc6a was upregulated after 6 h in brain, while Bglap (Ost) gene was downregulated. Oxt gene was upregulated by 5-fold following 5-days CS in bone. Oxtr was upregulated by 0.5 and 0.3-fold, respectively, following 6 h and 5-days CS in brain. Oxtr and Oxt were downregulated in testis and in BAT. The changes in the expression levels of control genes vs. genes following 6 h and 5-days CS were correlated in all tissues, but not in BAT. Correlation in BAT was improved eliminating Ngfr (p75ntr) data. The correlation in brain was lost eliminating Oxtr data. In sum, Ucp-1 potentiation in BAT after cold stress is associated with early Ngf-response in the same tissue and trophic action in bone and testis. In contrast, BDNF exerts bone and neuroprotective effects. Similarly to Ucp-1, Bglap (Ost) signaling is enhanced in bone and BAT while it may exert local neuroprotective effects thought its receptor. Ngfr (p75ntr) regulates the adaptation to CS through a feed-back loop in BAT. Oxtr regulates the gene-response to CS through a feed-forward loop in brain. Overall these results expand the understanding of the physiology of these molecules under metabolic thermogenesis.
机译:Ngf / p75ntr-Ntrk1和Bdnf,Osteocalcin-Ost / Gprc6a和催产素-Oxt / Oxtr基因之间的相关性受到挑战,以研究冷应激(CS)后3个月大小鼠的mRNA水平。解偶联蛋白1(Ucp-1)被用作阳性对照。将对照小鼠维持在室温T = 25℃,将CS小鼠维持在T = 4℃持续6h和5天(N = 15只小鼠)。 RT-PCR实验表明,在棕色脂肪组织(BAT)中,CS刺激6 h后,Ucp-1和Ngf基因分别上调了2倍和1.5倍。 Ubat-1在5天后也被上调,而Ngfr(p75ntr)和Ntrk1基因在BAT中在CS 6小时和5天后被下调。 5天后,骨骼和睾丸中的NGF和P75NTR上调,CS后6 h,睾丸中的P75NTR升高。 CS第5天后,Bdnf在骨骼中上调,而在睾丸中下调。 CS持续5天后,骨骼和BAT中的 OST 分别上调了16倍和3倍。脑内6h后 Gprc6a 上调,而 Bglap Ost)基因下调。骨骼肌CS 5天后, Oxt 基因上调了5倍。大脑中CS持续6天和5天后, Oxtr 分别上调了0.5倍和0.3倍。 Oxtr Oxt 在睾丸和BAT中被下调。 CS在6小时和5天后,对照基因与基因的表达水平的变化在所有组织中均相关,而在BAT中则不相关。消除了 Ngfr(p75ntr)数据,改善了BAT中的相关性。大脑中的相关性丢失,消除了 Oxtr 数据。总之,冷应激后BAT中的 Ucp-1 增强与同一组织中的早期 Ngf 响应以及骨骼和睾丸的营养作用有关。相反,BDNF发挥骨骼和神经保护作用。与 Ucp-1类似,Bglap Ost)信号在骨骼和BAT中得到增强,但可能会以其受体的形式发挥局部神经保护作用。 Ngfr(p75ntr)通过BAT中的反馈回路调节对CS的适应。 Oxtr 通过大脑中的前馈环调节基因对CS的反应。总的来说,这些结果扩大了对在代谢生热作用下这些分子的生理学的理解。

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