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功能特征分析及新型 AE1 突变 R730C 的改良拯救与过水化阳离子渗漏口形细胞增多症相关。

Functional characterization and modified rescue of novel AE1 mutation R730C associated with overhydrated cation leak stomatocytosis.

机构信息

Division of Nephrology, Beth Israel Deaconess Medical Center, 330 Brookline Ave., Boston, MA 02215, USA.

出版信息

Am J Physiol Cell Physiol. 2011 May;300(5):C1034-46. doi: 10.1152/ajpcell.00447.2010. Epub 2011 Jan 5.

Abstract

We report the novel, heterozygous AE1 mutation R730C associated with dominant, overhydrated, cation leak stomatocytosis and well-compensated anemia. Parallel elevations of red blood cell cation leak and ouabain-sensitive Na(+) efflux (pump activity) were apparently unaccompanied by increased erythroid cation channel-like activity, and defined ouabain-insensitive Na(+) efflux pathways of nystatin-treated cells were reduced. Epitope-tagged AE1 R730C at the Xenopus laevis oocyte surface exhibited severely reduced Cl(-) transport insensitive to rescue by glycophorin A (GPA) coexpression or by methanethiosulfonate (MTS) treatment. AE1 mutant R730K preserved Cl(-) transport activity, but R730 substitution with I, E, or H inactivated Cl(-) transport. AE1 R730C expression substantially increased endogenous oocyte Na(+)-K(+)-ATPase-mediated (86)Rb(+) influx, but ouabain-insensitive flux was minimally increased and GPA-insensitive. The reduced AE1 R730C-mediated sulfate influx did not exhibit the wild-type pattern of stimulation by acidic extracellular pH (pH(o)) and, unexpectedly, was partially rescued by exposure to sodium 2-sulfonatoethyl methanethiosulfonate (MTSES) but not to 2-aminoethyl methanethiosulfonate hydrobromide (MTSEA) or 2-(trimethylammonium)ethyl methanethiosulfonate bromide (MTSET). AE1 R730E correspondingly exhibited acid pH(o)-stimulated sulfate uptake at rates exceeding those of wild-type AE1 and AE1 R730K, whereas mutants R730I and R730H were inactive and pH(o) insensitive. MTSES-treated oocytes expressing AE1 R730C and untreated oocytes expressing AE1 R730E also exhibited unprecedented stimulation of Cl(-) influx by acid pH(o). Thus recombinant cation-leak stomatocytosis mutant AE1 R730C exhibits severely reduced anion transport unaccompanied by increased Rb(+) and Li(+) influxes. Selective rescue of acid pH(o)-stimulated sulfate uptake and conferral of acid pH(o)-stimulated Cl(-) influx, by AE1 R730E and MTSES-treated R730C, define residue R730 as critical to selectivity and regulation of anion transport by AE1.

摘要

我们报告了一种新型的杂合 AE1 突变 R730C,该突变与显性、过水化、阳离子渗漏性口形细胞溶血病和代偿性贫血有关。红细胞阳离子渗漏和哇巴因敏感的 Na(+)外排(泵活性)的平行升高显然没有伴随着红细胞阳离子通道样活性的增加,并且定义为制霉菌素处理细胞的哇巴因不敏感的 Na(+)外排途径减少。在非洲爪蟾卵母细胞表面标记的 AE1 R730C 表现出严重降低的 Cl(-)转运,不受糖蛋白 A (GPA)共表达或甲硫氨酸硫代磺酸盐 (MTS)处理的挽救。AE1 突变体 R730K 保留了 Cl(-)转运活性,但用 I、E 或 H 替代 R730 则使 Cl(-)转运失活。AE1 R730C 的表达大大增加了内源性卵母细胞 Na(+)-K(+)-ATPase 介导的 (86)Rb(+)内流,但哇巴因不敏感的通量仅略有增加,GPA 不敏感。减少的 AE1 R730C 介导的硫酸盐内流没有表现出野生型对酸性细胞外 pH(pH(o))的刺激模式,出乎意料的是,部分被暴露于 2-磺基乙氧基乙基甲硫氨酸硫代磺酸盐(MTSES)挽救,但不能被 2-氨基乙基甲硫氨酸硫代磺酸盐氢溴酸盐(MTSEA)或 2-(三甲基铵)乙基甲硫氨酸硫代磺酸盐溴化物(MTSET)挽救。相应地,AE1 R730E 表现出酸性 pH(o)刺激的硫酸盐摄取速率超过野生型 AE1 和 AE1 R730K,而突变体 R730I 和 R730H 则无活性且对 pH(o)不敏感。用 MTSES 处理表达 AE1 R730C 的卵母细胞和未处理表达 AE1 R730E 的卵母细胞也表现出前所未有的酸性 pH(o)刺激的 Cl(-)内流。因此,重组阳离子渗漏性口形细胞溶血病突变体 AE1 R730C 表现出严重降低的阴离子转运,而没有伴随着 Rb(+)和 Li(+)内流的增加。AE1 R730E 的选择性挽救和用 MTSES 处理的 R730C 的酸性 pH(o)刺激的硫酸盐摄取,定义残基 R730 对 AE1 的阴离子转运的选择性和调节至关重要。

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