首页> 外文期刊>The Journal of Experimental Biology >Molecular characterization of sodium/proton exchanger 3 (NHE3) from the yellow fever vector, Aedes aegypti
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Molecular characterization of sodium/proton exchanger 3 (NHE3) from the yellow fever vector, Aedes aegypti

机译:黄热病媒介埃及伊蚊钠/质子交换剂3(NHE3)的分子表征

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Transport across insect epithelia is thought to depend on the activity of a vacuolar-type proton ATPase (V-ATPase) that energizes ion transport through a secondary proton/cation exchanger. Although several of the subunits of the V-ATPase have been cloned, the molecular identity of the exchanger has not been elucidated. Here, we present the identification of sodium/proton exchanger isoform 3 (NHE3) from yellow fever mosquito, Aedes aegypti (AeNHE3). AeNHE3 localizes to the basal plasma membrane of Malpighian tubule, midgut and the ion-transporting sector of gastric caeca. Midgut expression of NHE3 shows a different pattern of enrichment between larval and adult stages, implicating it in the maintenance of regional pH in the midgut during the life cycle. In all tissues examined, NHE3 predominantly localizes to the basal membrane. In addition the limited expression in intracellular vesicles in the median Malpighian tubules may reflect a potential functional versatility of NHE3 in a tissue-specific manner. The localization of V-ATPase and NHE3, and exclusion of Na+/K+-ATPase from the distal ion-transporting sector of caeca, indicate that the role of NHE3 in ion and pH regulation is intricately associated with functions of V-ATPase. The AeNHE3 complements yeast mutants deficient in yeast NHEs, NHA1 and NHX1. To further examine the functional property of AeNHE3, we expressed it in NHE-deficient fibroblast cells. AeNHE3 expressing cells were capable of recovering intracellular pH following an acid load. The recovery was independent of the large cytoplasmic region of AeNHE3, implying this domain to be dispensable for NHE3 ion transport function. Na-22(+) uptake studies indicated that AeNHE3 is relatively insensitive to amiloride and EIPA and is capable of Na+ transport in the absence of the cytoplasmic tail. Thus, the core domain containing the transmembrane regions of NHE3 is sufficient for pH recovery and ion transport. The present data facilitate refinement of the prevailing models of insect epithelial transport by incorporating basal amiloride-insensitive NHE3 as a critical mediator of transepithelial ion and fluid transport and likely in the maintenance of intracellular pH.
机译:跨昆虫上皮的转运被认为取决于液泡型质子ATPase(V-ATPase)的活性,该酶为通过次级质子/阳离子交换剂的离子转运提供能量。尽管已克隆了V-ATPase的几个亚基,但尚未阐明交换子的分子身份。在这里,我们介绍从黄热蚊,埃及伊蚊(AeNHE3)的钠/质子交换异构体3(NHE3)的鉴定。 AeNHE3定位于Malpighian小管,中肠和胃盲肠的离子传输区的基底质膜。 NHE3的中肠表达在幼虫和成年阶段之间表现出不同的富集模式,暗示其在生命周期中维持中肠的局部pH值。在所有检查的组织中,NHE3主要位于基底膜。另外,正中的马氏小管中细胞内囊泡中的有限表达可能以组织特异性方式反映NHE3的潜在功能多样性。 V-ATPase和NHE3的定位,以及盲肠远侧离子传输区中Na + / K + -ATPase的排除,表明NHE3在离子和pH调节中的作用与V-ATPase的功能密切相关。 AeNHE3补充了缺乏酵母NHE,NHA1和NHX1的酵母突变体。为了进一步检查AeNHE3的功能特性,我们在NHE缺陷成纤维细胞中表达了它。表达AeNHE3的细胞能够在酸负荷后恢复细胞内pH。回收率独立于AeNHE3的大细胞质区域,这意味着该结构域可用于NHE3离子转运功能。 Na-22(+)吸收研究表明,AeNHE3对阿米洛利和EIPA相对不敏感,并且在不存在细胞质尾巴的情况下能够转运Na +。因此,含有NHE3跨膜区的核心结构域足以用于pH恢复和离子迁移。本数据通过纳入对阿米洛利不敏感的基础NHE3作为跨上皮离子和液体运输的关键介质,并可能维持细胞内pH值,有助于完善昆虫上皮运输的流行模型。

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