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首页> 外文期刊>American Journal of Physiology >Differential regulation of AMP-activated kinase and AKT kinase in response to oxygen availability in crucian carp (Carassius carassius)
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Differential regulation of AMP-activated kinase and AKT kinase in response to oxygen availability in crucian carp (Carassius carassius)

机译:AMP活化激酶和AKT激酶响应Crucian Carp(Carassius Carassius)的氧气可用性差异调节

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Differential regulation of AMP-activated kinase and AKT kinase in response to oxygen availability in crucian carp (Carassius carassius). Am J Physiol Regul Integr Comp Physiol 295: R1803-R1814, 2008. First published October 15, 2008; doi:10.1152/ajpregu.90590.2008.俥 investigated whether two ki-nases critical for survival during periods of energy deficiency in anoxia-intolerant mammalian species, AMP-activated kinase (AMPK), and protein kinase B (AKT), are equally important for hypoxic/anoxic survival in the extremely anoxia-tolerant crucian carp (Carassius carassius). We report that phosphorylation of AMPK and AKT in heart and brain showed small changes after 10 days of severe hypoxia (0.3 mg O2/I at 9H). In contrast, anoxia exposure (0.01 mg O2/l at 8H) substantially increased AMPK phosphorylation but decreased AKT phosphorylation in carp heart and brain, indicating activation of AMPK and deactivation of AKT. In agreement, blocking the activity of AMPK in anoxic fish in vivo with 20 mg/kg Compound C resulted in an elevated metabolic rate (as indicated by increased ethanol production) and tended to reduce energy charge. This is the first in vivo experiment with Compound C in a nonmammalian vertebrate, and it appears that AMPK plays a role in mediating anoxic metabolic depression in crucian carp. Real-time RT-PCR analysis of the investigated AMPK subunit revealed that the most likely composition of subunits in the carp heart is a2, betab, 72a, whereas a more even expression of subunits was found in the brain. In the heart, expression of the regulatory 72-subunit increased in the heart during anoxia. In the brain, expression of the cu-, a2-, and 71-subunits decreased with anoxia exposure, but expression of the 72-subunit remained constant. Combined, our findings suggest that AMPK and AKT may play important, but opposing roles for hypoxic/anoxic survival in the anoxia-tolerant crucian carp
机译:AMP活化激酶和AKT激酶响应Crucian Carp(Carassius Carassius)的氧气可用性差分调节。 AM J Physiol Study Integr Comp Physiol 295:R1803-R1814,2008. 2008年10月15日发表; DOI:10.1152 / AJPREGU.90590.2008。俥调查了在缺氧 - 不耐受哺乳动物物种,AMP活化激酶(AMPK)和蛋白激酶B(AKT)中的能量缺乏期间对存活至关重要的3个Ki-ancase是否至关重要极贫氧耐受性鲫鱼(Carassius Carassius)的缺氧/缺氧生存。我们举报了AMPK和AKT在心脏和脑中AKT的磷酸化在严重缺氧10天后的较小变化(0.3mg O 2 / I在9小时)。相比之下,缺氧暴露(0.01mg O 2 / L)基本上增加了AMPK磷酸化,但在鲤鱼心脏和脑中降低了Akt磷酸化,表明AMPK的激活和AKT的失活。在一致性的是,在体内阻断AMPK在体内用20mg / kg化合物C中的AMPK活性导致升高的代谢率(如乙醇生产的增加所示)并倾向于降低能量电荷。这是第一个在非含有非含有脊椎动物中的化合物C体内实验,并且似乎AMPK在介导Crucian鲤鱼中介导缺氧代谢抑郁作用。研究的AMPK亚基的实时RT-PCR分析显示,鲤鱼心中最有可能的亚基组成是A2,β,72a,而在大脑中发现亚基的更均匀表达。在心脏中,调节72-亚基的表达在缺氧期间的心脏中增加。在脑中,Cu-,A2-和71组织的表达随贫血暴露而降低,但72-亚基的表达仍然是恒定的。结合,我们的研究结果表明,AMPK和AKT可能会发挥重要,但对抗贫氧/缺氧生存在贫砷鲫鱼鲤鱼中的作用

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