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首页> 外文期刊>Biochemistry and Cell Biology >Differential expression of Akt, PPARgamma, and PGC-1 during hibernation in bats.
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Differential expression of Akt, PPARgamma, and PGC-1 during hibernation in bats.

机译:蝙蝠冬眠期间Akt,PPARgamma和PGC-1的差异表达。

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摘要

The effects of hibernation on the expression of Akt (protein kinase B), the peroxisome proliferator-activated receptor gamma isoform (PPARgamma), and the PPARgamma coactivator PGC-1 were assessed in seven tissues of the little brown bat, Myotis lucifugus. Western blotting revealed that the levels of active phosphorylated Akt were strongly reduced in brain, kidney, liver, and white adipose during torpor as compared with aroused animals and that total Akt protein was also reduced in white adipose during torpor. By contrast, both total and phospho-Akt were elevated in brown adipose tissue, the thermogenic organ. PPARgamma and PGC-1 levels showed parallel changes in all organs. Both were strongly suppressed in brain, but levels increased significantly in all other organs during hibernation (except for PGC-1 in heart). Reduced Akt activity is consistent with a probable reduced insulin response during torpor that facilitates the mobilization of lipid reserves for fuel supply and is further supported by increased gene expression of enzymes and proteins involved in lipid catabolism under the stimulation of enhanced PPARgamma and PGC-1 levels.
机译:在小棕蝙蝠Myotis lucifugus的七个组织中评估了冬眠对Akt(蛋白激酶B),过氧化物酶体增殖物激活的受体伽玛同工型(PPARgamma)和PPARgamma共激活剂PGC-1表达的影响。蛋白质印迹显示,与引起唤醒的动物相比,在脑部,肾脏,肝脏和白色脂肪中,活性磷酸化Akt的水平大大降低,而在白色脂肪中总Akt蛋白也降低。相比之下,棕色脂肪组织(产热器官)中的总Akt和磷酸Akt均升高。 PPARγ和PGC-1水平在所有器官中均显示出平行变化。两者均在大脑中受到强烈抑制,但是在休眠期间,所有其他器官的水平均显着升高(心脏中的PGC-1除外)。 Akt活性降低与玉米粥中可能减少的胰岛素反应相一致,这有助于调动脂质储备以供应燃料,并在增强PPARgamma和PGC-1水平的刺激下,参与脂质分解代谢的酶和蛋白质的基因表达增加进一步支持。

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