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Rhesus expression in a green alga is regulated by CO2

机译:绿藻中恒河猴的表达受二氧化碳调节

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摘要

The function of the Rhesus (Rh) complex in the human red cell membrane has been unknown for six decades. Based on the organismal, organ, and tissue distribution of Rh proteins, and on our evidence that their only known paralogues, the ammonium and methylammonium transport proteins (also called methylammonium permeases), are gas channels for NH3, we recently speculated that Rh proteins are biological gas channels for CO2. Like NH3, CO2 differs from other gases in being readily hydrated. We have now tested our speculation by studying expression of the RH1 gene in the photosynthetic microbe Chlamydomonas reinhardtii. Expression of RH1 was high for cells grown in air supplemented with 3% CO2 or shifted from air to high CO2 (3%) for 3 h. Conversely, RH1 expression was low for cells grown in air (0.035% CO2) or shifted from high CO2 to air for 3 h. These results make viable the hypothesis that Rh1 and Rh proteins generally are gas channels for CO2.
机译:恒河猴(Rh)复合体在人红细胞膜中的功能已未知六十年了。根据Rh蛋白的生物,器官和组织分布,以及我们的证据表明,它们唯一已知的旁系同源物铵和甲基铵转运蛋白(也称为甲基铵通透酶)是NH3的气体通道,我们最近推测Rh蛋白是二氧化碳的生物气体通道。像NH3一样,CO2与其他气体的区别在于易于水合。现在,我们通过研究光合微生物莱茵衣藻中的RH1基因的表达来检验我们的推测。对于在添加了3%CO2的空气中生长或在3小时内从空气转移到高CO2(3%)的细胞,RH1的表达较高。相反,RH1表达对于在空气中生长(0.035%CO2)或从高CO2转移到空气中3 h的细胞而言较低。这些结果使Rh1和Rh蛋白通常是CO2的气体通道这一假设成为可能。

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