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首页> 外文期刊>Genomics, proteomics & bioinformatics >Modulation of Gene Expression in Key Survival Pathways During Daily Torpor in the Gray Mouse Lemur, Microcebus murinus
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Modulation of Gene Expression in Key Survival Pathways During Daily Torpor in the Gray Mouse Lemur, Microcebus murinus

机译:灰鼠狐猴,小盲猴每日Torpor期间关键生存途径中基因表达的调节。

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A variety of mammals employ torpor as an energy-saving strategy in environments of marginal or severe stress either on a daily basis during their inactive period or on a seasonal basis during prolonged multi-day hibernation. Recently, a few Madagascar lemur species have been identified as the only primates that exhibit torpor; one of these is the gray mouse lemur (Microcebus murinus). To explore the regulatory mechanisms that underlie daily torpor in a primate, we analyzed the expression of 28 selected genes that represent crucial survival pathways known to be involved in squirrel and bat hibernation. Array-based real-time {PCR} was used to compare gene expression in control (aroused) versus torpid lemurs in five tissues including the liver, kidney, skeletal muscle, heart, and brown adipose tissue. Significant differences in gene expression during torpor were revealed among genes involved in glycolysis, fatty acid metabolism, antioxidant defense, apoptosis, hypoxia signaling, and protein protection. The results showed upregulation of select genes primarily in liver and brown adipose tissue. For instance, both tissues showed elevated gene expression of peroxisome proliferator activated receptor gamma (ppargc), ferritin (fth1), and protein chaperones during torpor. Overall, the data show that the expression of only a few genes changed during lemur daily torpor, as compared with the broader expression changes reported for hibernation in ground squirrels. These results provide an indication that the alterations in gene expression required for torpor in lemurs are not as extensive as those needed for winter hibernation in squirrel models. However, identification of crucial genes with altered expression that support lemur torpor provides key targets to be explored and manipulated toward a goal of translational applications of inducible torpor as a treatment option in human biomedicine.
机译:在边缘或严重压力环境下,许多哺乳动物每天都会在不活动状态下每天或在长期多天的休眠状态下在季节上采用torpor作为一种节能策略。最近,马达加斯加的一些狐猴物种被确定为唯一表现出to的灵长类动物。其中之一是灰鼠狐猴(Microcebus murinus)。为了探索在灵长类动物中日常进行火炬活动的调控机制,我们分析了28个选定基因的表达,这些基因代表了已知与松鼠和蝙蝠冬眠有关的关键生存途径。基于阵列的实时{PCR}用于比较在五个组织(包括肝,肾,骨骼肌,心脏和棕色脂肪组织)的对照(引起)和龟性狐猴中的基因表达。在糖酵解,脂肪酸代谢,抗氧化防御,细胞凋亡,缺氧信号传导和蛋白质保护相关的基因之间,在玉米粥中的基因表达存在显着差异。结果显示主要在肝脏和棕色脂肪组织中的选择基因上调。例如,两个组织都显示过氧化物酶体增殖物激活受体γ(ppargc),铁蛋白(fth1)和蛋白伴侣在torpor期间的基因表达升高。总体而言,数据表明,与狐猴在冬眠中报道的更广泛的表达变化相比,在狐猴的每日热身期间只有少数基因的表达发生了变化。这些结果表明,在狐猴中,对torpor所需的基因表达的变化不如在松鼠模型中进行冬眠所需的变化大。然而,鉴定具有改变表达的支持狐猴torpor的关键基因提供了关键的靶标,需要探索和操纵,以实现诱导型torpor在人类生物医学中作为治疗选择的翻译应用的目标。

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