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植物和哺乳动物中的水通道蛋白同源物可转运氨。

Aquaporin homologues in plants and mammals transport ammonia.

作者信息

Jahn Thomas P, Møller Anders L B, Zeuthen Thomas, Holm Lars M, Klaerke Dan A, Mohsin Brigitte, Kühlbrandt Werner, Schjoerring Jan K

机构信息

Plant Nutrition Laboratory, Department of Agricultural Sciences, The Royal Veterinary and Agricultural University, Thorvaldsensvej 40, DK-1871 Frederiksberg C, Denmark.

出版信息

FEBS Lett. 2004 Sep 10;574(1-3):31-6. doi: 10.1016/j.febslet.2004.08.004.

Abstract

Using functional complementation and a yeast mutant deficient in ammonium (NH4+) transport (Deltamep1-3), three wheat (Triticum aestivum) TIP2 aquaporin homologues were isolated that restored the ability of the mutant to grow when 2 mM NH4+ was supplied as the sole nitrogen source. When expressed in Xenopus oocytes, TaTIP2;1 increased the uptake of NH4+ analogues methylammonium and formamide. Furthermore, expression of TaTIP2;1 increased acidification of the oocyte-bathing medium containing NH4+ in accordance with NH3 diffusion through the aquaporin. Homology modeling of TaTIP2;1 in combination with site directed mutagenesis suggested a new subgroup of NH3-transporting aquaporins here called aquaammoniaporins. Mammalian AQP8 sharing the aquaammoniaporin signature also complemented NH4+ transport deficiency in yeast.

摘要

利用功能互补和一个缺乏铵(NH4+)转运功能的酵母突变体(Deltamep1-3),分离出了三个小麦(Triticum aestivum)TIP2水通道蛋白同源物,当以2 mM NH4+作为唯一氮源供应时,这些同源物恢复了突变体的生长能力。当在非洲爪蟾卵母细胞中表达时,TaTIP2;1增加了NH4+类似物甲铵和甲酰胺的摄取。此外,TaTIP2;1的表达根据NH3通过水通道蛋白的扩散增加了含有NH4+的卵母细胞孵育培养基的酸化。TaTIP2;1的同源建模结合定点诱变表明存在一个新的NH3转运水通道蛋白亚组,在此称为氨通道蛋白。具有氨通道蛋白特征的哺乳动物AQP8也补充了酵母中的NH4+转运缺陷。

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