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近端肾小管酸中毒与眼部病变:碳酸氢钠协同转运蛋白(NBCe1)基因(SLC4A4)中的一种新型错义突变。

Proximal renal tubular acidosis and ocular pathology: a novel missense mutation in the gene (SLC4A4) for sodium bicarbonate cotransporter protein (NBCe1).

作者信息

Demirci F Yesim K, Chang Min-Hwang, Mah Tammy S, Romero Michael F, Gorin Michael B

机构信息

Department of Ophthalmology, UPMC Eye Center, School of Medicine, University of Pittsburgh, Pittsburgh, PA 15213, USA.

出版信息

Mol Vis. 2006 Apr 10;12:324-30.

Abstract

PURPOSE

The electrogenic Na+/HCO3- cotransporter (NBCe1) plays a major role in renal bicarbonate absorption via proximal tubules and therefore is crucial for maintaining normal blood pH. The human gene for NBCe1 (SLC4A4) produces two major transcripts by alternative promoter usage (kNBCe1, originally cloned from kidney and pNBCe1, pancreatic/general form). Though rare, recessive SLC4A4 mutations have been reported in patients with proximal renal tubular acidosis, short stature, and ocular pathology. A 27-year-old male presented with these findings. The purpose of this study was to investigate the molecular pathology responsible for this patient's clinical findings.

METHODS

A comprehensive ophthalmic examination was performed, detailed ocular and systemic medical histories were taken and past medical records were obtained. Mutation screening was performed by using direct PCR sequencing of SLC4A4 exons and flanking intronic regions. Functional characterization of the mutation was made by expressing the wild-type and mutant NBCe1 proteins in Xenopus oocytes.

RESULTS

We identified a novel, homozygous, missense SLC4A4 mutation (Leu522Pro in kNBCe1) in our patient who had pRTA, short stature, enamel hypoplasia, and bilateral ocular disease (cataract, glaucoma, and band keratopathy). The patient also had a medical history of ataxia, migraine with transient hemiparesis attacks, and slight hypothyroidism. The mutant RNA failed to induce electrogenic transport activity. The L522P-protein was not effectively transported to the oocyte membrane and thus was unable to act as a transmembrane transporter.

CONCLUSIONS

This novel mutation increases our understanding of the structural/functional aspects of the NBCe1 protein and the molecular basis of the multiorgan pathologies associated with its defects.

摘要

目的

电中性钠/碳酸氢根共转运体(NBCe1)在近端肾小管重吸收碳酸氢根过程中起主要作用,因此对维持正常血液pH值至关重要。人类NBCe1基因(SLC4A4)通过选择性启动子使用产生两种主要转录本(kNBCe1,最初从肾脏克隆而来;pNBCe1,胰腺/通用型)。虽然罕见,但已报道近端肾小管酸中毒、身材矮小和眼部病变患者存在隐性SLC4A4突变。一名27岁男性出现了这些症状。本研究的目的是调查导致该患者临床表现的分子病理学机制。

方法

进行了全面的眼科检查,获取了详细的眼部和全身病史以及既往病历。通过对SLC4A4外显子和侧翼内含子区域进行直接PCR测序来进行突变筛查。通过在非洲爪蟾卵母细胞中表达野生型和突变型NBCe1蛋白对突变进行功能鉴定。

结果

我们在一名患有近端肾小管酸中毒、身材矮小、牙釉质发育不全和双侧眼部疾病(白内障、青光眼和带状角膜病变)的患者中鉴定出一种新的纯合错义SLC4A4突变(kNBCe1中的Leu522Pro)。该患者还患有共济失调、伴有短暂性偏瘫发作的偏头痛和轻度甲状腺功能减退病史。突变RNA未能诱导电中性转运活性。L522P蛋白未有效转运至卵母细胞膜,因此无法作为跨膜转运体发挥作用。

结论

这种新突变增进了我们对NBCe1蛋白结构/功能方面以及与其缺陷相关的多器官病变分子基础的理解。

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