首页> 外文期刊>The Journal of general physiology >Different Transport Mechanisms in Plant and Human AMT/Rh-type Ammonium Transporters
【24h】

Different Transport Mechanisms in Plant and Human AMT/Rh-type Ammonium Transporters

机译:植物和人类AMT / Rh型铵转运蛋白中不同的转运机制

获取原文
           

摘要

The conserved family of AMT/Rh proteins facilitates ammonium transport across animal, plant, and microbial membranes. A bacterial homologue, AmtB, forms a channel-like structure and appears to function as an NH3 gas channel. To evaluate the function of eukaryotic homologues, the human RhCG glycoprotein and the tomato plant ammonium transporter LeAMT1;2 were expressed and compared in Xenopus oocytes and yeast. RhCG mediated the electroneutral transport of methylammonium (MeA), which saturated with Km = 3.8 mM at pHo 7.5. Uptake was strongly favored by increasing the pHo and was inhibited by ammonium. Ammonium induced rapid cytosolic alkalinization in RhCG-expressing oocytes. Additionally, RhCG expression was associated with an alkali-cation conductance, which was not significantly permeable to NH4+ and was apparently uncoupled from the ammonium transport. In contrast, expression of the homologous LeAMT1;2 induced pHo-independent MeA+ uptake and specific NH4+ and MeA+ currents that were distinct from endogenous currents. The different mechanisms of transport, including the RhCG-associated alkali-cation conductance, were verified by heterologous expression in appropriate yeast strains. Thus, homologous AMT/Rh-type proteins function in a distinct manner; while LeAMT1;2 carries specifically NH4+, or cotransports NH3/H+, RhCG mediates electroneutral NH3 transport.
机译:AMT / Rh蛋白的保守家族有助于铵离子跨动物,植物和微生物膜的运输。细菌同源物AmtB形成通道状结构,似乎起NH3气体通道的作用。为了评估真核同源物的功能,在非洲爪蟾卵母细胞和酵母中表达并比较了人类RhCG糖蛋白和番茄植物铵转运蛋白LeAMT1; 2。 RhCG介导了甲基铵(MeA)的电中性迁移,在pHo 7.5时Km = 3.8 mM饱和。通过增加pHo强烈促进摄取,并被铵抑制。铵诱导表达RhCG的卵母细胞中快速的胞质碱化。此外,RhCG的表达与碱性阳离子传导相关,该传导对NH4 +的渗透性不明显,并且显然与铵离子的迁移无关。相反,同源LeAMT1; 2的表达诱导了非pHo依赖性的MeA +摄取以及特定的NH4 +和MeA +电流,这些电流不同于内源性电流。通过在合适的酵母菌株中的异源表达,验证了不同的运输机制,包括与RhCG相关的碱性阳离子电导。因此,同源的AMT / Rh型蛋白以不同的方式起作用。 LeAMT1; 2特别携带NH4 +或共转运NH3 / H +,而RhCG介导电子中性NH3转运。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号