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Properties and Expression of Na+/K+-ATPase α-Subunit Isoforms in the Brain of the Swamp Eel Monopterus albus Which Has Unusually High Brain Ammonia Tolerance

机译:Na + / K + -ATPaseα-亚基亚型在沼泽鳗(具有异常高的脑氨耐受性的黄Mon)的大脑中的表达

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摘要

The swamp eel, Monopterus albus, can survive in high concentrations of ammonia (>75 mmol l−1) and accumulate ammonia to high concentrations in its brain (∼4.5 µmol g−1). Na+/K+-ATPase (Nka) is an essential transporter in brain cells, and since NH4 + can substitute for K+ to activate Nka, we hypothesized that the brain of M. albus expressed multiple forms of Nka α-subunits, some of which might have high K+ specificity. Thus, this study aimed to clone and sequence the nka α-subunits from the brain of M. albus, and to determine the effects of ammonia exposure on their mRNA expression and overall protein abundance. The effectiveness of NH4 + to activate brain Nka from M. albus and Mus musculus was also examined by comparing their Na+/K+-ATPase and Na+/NH4 +-ATPase activities over a range of K+/NH4 + concentrations. The full length cDNA coding sequences of three nkaα (nkaα1, nkaα3a and nkaα3b) were identified in the brain of M. albus, but nkaα2 expression was undetectable. Exposure to 50 mmol l−1 NH4Cl for 1 day or 6 days resulted in significant decreases in the mRNA expression of nkaα1, nkaα3a and nkaα3b. The overall Nka protein abundance also decreased significantly after 6 days of ammonia exposure. For M. albus, brain Na+/NH4 +-ATPase activities were significantly lower than the Na+/K+-ATPase activities assayed at various NH4 +/K+ concentrations. Furthermore, the effectiveness of NH4 + to activate Nka from the brain of M. albus was significantly lower than that from the brain of M. musculus, which is ammonia-sensitive. Hence, the (1) lack of nkaα2 expression, (2) high K+ specificity of K+ binding sites of Nkaα1, Nkaα3a and Nkaα3b, and (3) down-regulation of mRNA expression of all three nkaα isoforms and the overall Nka protein abundance in response to ammonia exposure might be some of the contributing factors to the high brain ammonia tolerance in M. albus.
机译:沼泽鳗Mon(Monopterus albus)可以在高浓度的氨(> 75 mmol l -1 )中存活,并在其大脑中累积高浓度的氨(〜4.5 µmol g -1))。 Na + / K + -ATPase(Nka)是脑细胞中必不可少的转运蛋白,因为NH4 + 可以替代K + 激活Nka,我们假设白杨的大脑表达了多种形式的Nkaα-亚基,其中一些可能具有很高的K + 特异性。因此,本研究旨在克隆和测定白念珠菌脑中的nkaα亚基,并确定氨暴露对其mRNA表达和总蛋白丰度的影响。还通过比较它们的Na + / K + -ATPase来检验NH4 + 激活白M和小家鼠的脑Nka的有效性。 Na + / NH4 + -ATPase的活性在K + / NH4 + 浓度范围内。在艾氏支原体的脑中鉴定了三个nkaα(nkaα1,nkaα3a和nkaα3b)的全长cDNA编码序列,但未检测到nkaα2的表达。暴露于50 mmol l -1 NH4Cl 1天或6天导致nkaα1,nkaα3a和nkaα3b的mRNA表达显着下降。氨暴露6天后,总Nka蛋白丰度也显着降低。对于白色支原体,脑Na + / NH4 + -ATPase活性显着低于Na + / K + + / K + 浓度下测定的sup> -ATPase活性。此外,NH4 + 激活 M脑中Nka的有效性。 albus 明显低于 M的大脑。肌肉,对氨敏感。因此,(1)缺乏nkaα 2表达,(2)Nkaα1,Nkaα3a和Nkaα的K + 结合位点的高K + 特异性高Nkaα3b和(3)氨暴露引起的所有三种nkaα亚型的mRNA表达下调以及总Nka蛋白丰度可能是导致高氨氮脑耐受的部分因素em> M。阿不思

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