Sorting of P-type ATPases in polarized epithelial cells.

L A Dunbar, N Courtois-Coutry, D L Roush, T R Muth, C J Gottardi, V Rajendran, J Geibel, M Kashgarian, M J Caplan
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Abstract

The Na,K-ATPase and the H,K-ATPase are highly homologous members of the P-type family of ion transporting ATPase. Despite their structural similarity, these two pumps are sorted to different destinations in polarized epithelial cells. While the Na,K-ATPase is restricted to the basolateral surfaces of most epithelial cells types, the H,K-ATPase is concentrated at the apical plasmalemma and in a pre-apical vesicular storage compartment in the parietal cells of the stomach. We have generated molecular chimeras composed of complementary portions of these two pumps' alpha-subunits. By expressing these pump constructs in polarized epithelial cells in culture, we have been able to identify sequence domains which participate in the targetting of the holoenzyme. We find that information embedded within the sequence of the fourth transmembrane domain of the H,K-ATPase is sufficient to account for this protein's apical localization. Stimulation of gastric acid secretion results in insertion of the intracellular H,K-ATPase pool into the apical plasma membrane and inactivation of acid secretion is accompanied by the re-internalization of these pumps. We have identified a tyrosine-based signal in the cytoplasmic tail of the H,K-ATPase beta-subunit which appears to be required for this endocytosis. We have mutated the critical tyrosine residue to alanine and expressed the altered protein in transgenic mice. The H,K-ATPase remains continuously at the apical cell surface in parietal cells from these animals, and they constitutively hypersecrete gastric acid. These results demonstrate that the beta-subunit sequence mediates the internalization of the H,K-ATPase and is required for the cessation of gastric acid secretion. Thus, at least two sorting signals are required to ensure the proper targetting and regulation of the gastric H,K pump.

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极化上皮细胞中p型atp酶的分选。
Na, k - atp酶和H, k - atp酶是离子转运atp酶p型家族中高度同源的成员。尽管它们的结构相似,这两个泵在极化上皮细胞中被分类到不同的目的地。Na, k - atp酶局限于大多数上皮细胞的基底外侧表面,而H, k - atp酶则集中在胃顶叶细胞的根尖质膜和根尖前囊泡储存室中。我们已经生成了由这两个泵α -亚基的互补部分组成的分子嵌合体。通过在培养的极化上皮细胞中表达这些泵构建物,我们已经能够确定参与全酶靶向的序列结构域。我们发现嵌入在H, k - atp酶的第四个跨膜结构域序列中的信息足以解释该蛋白的顶端定位。胃酸分泌的刺激导致细胞内H, k - atp酶池插入顶质膜,酸分泌的失活伴随着这些泵的重新内化。我们已经在H, k - atp酶β亚基的细胞质尾部发现了一个酪氨酸信号,这似乎是这种内吞作用所必需的。我们将关键的酪氨酸残基突变为丙氨酸,并在转基因小鼠中表达了改变后的蛋白。在这些动物的顶细胞中,H, k - atp酶持续存在于顶细胞表面,构成性高分泌胃酸。这些结果表明,β亚基序列介导H, k - atp酶的内化,是停止胃酸分泌所必需的。因此,至少需要两个分选信号来保证胃H,K泵的正确靶向和调控。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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