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Band 3 Edmonton I,一种新型阴离子交换蛋白 1 突变体,导致球形红细胞增多症和远端肾小管性酸中毒。

Band 3 Edmonton I, a novel mutant of the anion exchanger 1 causing spherocytosis and distal renal tubular acidosis.

机构信息

Membrane Protein Research Group, Department of Physiology, University of Alberta, Edmonton, Alberta, Canada T6G 2H7.

出版信息

Biochem J. 2010 Feb 24;426(3):379-88. doi: 10.1042/BJ20091525.

Abstract

dRTA (distal renal tubular acidosis) and HS (hereditary spherocytosis) are two diseases that can be caused by mutations in the gene encoding the AE1 (anion exchanger 1; Band 3). dRTA is characterized by defective urinary acidification, leading to metabolic acidosis, renal stones and failure to thrive. HS results in anaemia, which may require regular blood transfusions and splenectomy. Mutations in the gene encoding AE1 rarely cause both HS and dRTA. In the present paper, we describe a novel AE1 mutation, Band 3 Edmonton I, which causes dominant HS and recessive dRTA. The patient is a compound heterozygote with the new mutation C479W and the previously described mutation G701D. Red blood cells from the patient presented a reduced amount of AE1. Expression in a kidney cell line showed that kAE1 (kidney AE1) C479W is retained intracellularly. As kAE1 is a dimer, we performed co-expression studies and found that, in kidney cells, kAE1 C479W and G701D proteins traffic independently from each other despite their ability to form heterodimers. Therefore the patient carries one kAE1 mutant that is retained in the Golgi (G701D) and another kAE1 mutant (C479W) located in the endoplasmic reticulum of kidney cells, and is thus probably unable to reabsorb bicarbonate into the blood. We conclude that the C479W mutant is a novel trafficking mutant of AE1, which causes HS due to a decreased cell-surface AE1 protein and results in dRTA due to its intracellular retention in kidney.

摘要

dRTA(远端肾小管性酸中毒)和 HS(遗传性血影红细胞增多症)是两种可由编码 AE1(阴离子交换器 1;Band 3)的基因突变引起的疾病。dRTA 的特征是尿酸化缺陷,导致代谢性酸中毒、肾结石和生长不良。HS 导致贫血,可能需要定期输血和脾切除术。编码 AE1 的基因突变很少同时导致 HS 和 dRTA。在本文中,我们描述了一种新的 AE1 突变,Band 3 Edmonton I,它导致显性 HS 和隐性 dRTA。该患者是复合杂合子,具有新突变 C479W 和先前描述的突变 G701D。来自患者的红细胞 AE1 表达量减少。在肾细胞系中的表达表明,kAE1(肾 AE1)C479W 被保留在细胞内。由于 kAE1 是二聚体,我们进行了共表达研究,发现尽管 kAE1 C479W 和 G701D 蛋白能够形成异二聚体,但在肾细胞中它们彼此独立地运输。因此,该患者携带一种在高尔基体中保留的 kAE1 突变体(G701D)和另一种位于肾细胞内质网中的 kAE1 突变体(C479W),因此可能无法将碳酸氢盐重吸收回血液中。我们得出结论,C479W 突变体是 AE1 的一种新型转运突变体,由于细胞表面 AE1 蛋白减少而导致 HS,并由于其在肾内的细胞内保留而导致 dRTA。

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