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In Vivo Nitrogenase Regulation by Ammonium and Methylamine and the Effect of MSX on Ammonium Transport in Anabaena flos-aquae

机译:铵盐和甲胺的体内硝化酶调控及MSX对鱼腥藻中铵转运的影响

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摘要

Ammonium suppresses nitrogenase activity in Anabaena flos-aquae (Lyng) Breb. at all pH values tested. l-Methionine-dl-sulfoximine at 1 millimolar totally inhibited glutamine synthetase, and 10 micromolar partially inhibited. Both concentrations protected nitrogenase activity from ammonium-induced suppression at pH 7.1 and 8.1. At pH 9.3 and 10.2, methionine sulfoximine did not alleviate the suppression of nitrogenase by ammonium. This pH-dependent protection of nitrogenase activity is a result of the noncompetitive inhibition of the ammonium transporter by methionine sulfoximine. At pH 7.1 and 8.2, ammonium is protonated and methionine sulfoximine inhibits its entry into the cell. At pH 9.3 and 10.2, unprotonated ammonia is abundant and may enter the cell independent of the transport system. The effects of ammonium are closely mimicked by the ammonium analog methylamine. These results suggest that ammonium per se is an important in vivo regulator of nitrogen fixation and its function can be mimicked by methylamine. Previous studies employing methionine sulfoximine may have to be re-evaluated in light of the inhibitory effects of methionine sulfoximine on the ammonium transporter.
机译:铵可抑制鱼腥藻鱼腥藻中的固氮酶活性。在所有测试的pH值下。 1毫摩尔的1-蛋氨酸-dl-磺胺基亚胺完全抑制谷氨酰胺合成酶,而10微摩尔部分抑制。两种浓度均能保护固氮酶活性免受pH 7.1和8.1的铵诱导的抑制作用。在pH 9.3和10.2时,蛋氨酸亚砜亚胺不能减轻铵盐对固氮酶的抑制作用。 pH依赖性的固氮酶活性保护是甲硫氨酸亚砜肟非竞争性抑制铵转运蛋白的结果。在pH 7.1和8.2时,铵会被质子化,而蛋氨酸亚磺酰亚胺会抑制其进入细胞。在pH 9.3和10.2时,未质子化的氨含量很高,并且可以独立于运输系统进入细胞。铵的作用与铵类似物甲胺非常相似。这些结果表明铵本身是体内重要的固氮调节剂,其功能可以被甲胺模仿。鉴于蛋氨酸硫肟亚胺对铵转运蛋白的抑制作用,可能不得不重新评估先前使用蛋氨酸硫肟亚胺的研究。

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