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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Band 3 Courcouronnes (Ser667Phe): a trafficking mutant differentially rescued by wild-type band 3 and glycophorin A.
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Band 3 Courcouronnes (Ser667Phe): a trafficking mutant differentially rescued by wild-type band 3 and glycophorin A.

机译:Band 3 Courcouronnes(Ser667Phe):一种由野生型band 3和糖蛋白A差异拯救的贩运突变体。

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摘要

We describe a mutation in human erythrocyte band 3 (anion exchanger 1; SLC4A1) causing both hereditary spherocytosis and distal renal tubular acidosis. The proband developed a transfusion-dependent, hemolytic anemia following birth. Immunoblotting showed band 3 was reduced to approximately 35% of wildtype; other proteins of the band 3/Rh macrocomplex were also reduced. DNA sequence analysis revealed a novel homozygous mutation, c.2000C>T, leading to the amino acid substitution Ser667Phe. The parents were heterozygous for the same mutation. Sulfate influx in the patient's erythrocytes was approximately 40% wild type. The mutant band 3 produced very little chloride influx when expressed in Xenopus oocytes. Influx was partially rescued by coexpression of glycophorin A and also rescued by coexpression of wild-type band 3. At 2 years of age, an ammonium chloride challenge showed the child has incomplete distal renal tubular acidosis (dRTA). Stable expression of mutant kidney band 3 in both nonpolarized and polarized Madin-Darby canine kidney cells showed that most of the mutant protein was retained in the endoplasmic reticulum. Overall our results suggest that the Ser667Phe does not affect the anion transport function of band 3, but causes a trafficking defect in both erythrocytes and kidney cells.
机译:我们描述了人类红细胞带3(阴离子交换器1; SLC4A1)中的一种突变,该突变导致遗传性球囊细胞增多和远端肾小管酸中毒。先证者出生后发生了输血依赖性溶血性贫血。免疫印迹显示条带3减少至野生型的35%;带3 / Rh宏复合物的其他蛋白质也被还原。 DNA序列分析揭示了一个新的纯合突变,c.2000C> T,导致氨基酸取代Ser667Phe。父母对于同一突变是杂合的。患者红细胞中的硫酸盐流入量约为野生型的40%。当在非洲爪蟾卵母细胞中表达时,突变带3几乎不产生氯离子流入。共流入的糖蛋白A可以部分挽救潮气,也可以野生表达的3带共表达来挽救潮气。在2岁时,氯化铵激发表明孩子患有远端肾小管性酸中毒(dRTA)不完全。突变肾带3在非极化和极化的Madin-Darby犬肾细胞中均稳定表达,表明大多数突变蛋白保留在内质网中。总体而言,我们的结果表明,Ser667Phe不会影响3带的阴离子转运功能,但会导致红细胞和肾细胞的运输缺陷。

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