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pendrin在碘化物调节中的作用。

The role of pendrin in iodide regulation.

作者信息

Fugazzola L, Cerutti N, Mannavola D, Vannucchi G, Beck-Peccoz P

机构信息

Istituto Clinico Humanitas, Milan, Italy.

出版信息

Exp Clin Endocrinol Diabetes. 2001;109(1):18-22. doi: 10.1055/s-2001-11008.

Abstract

Recent advances in human genetics have catalyzed the attention on Pendred's syndrome and its disease-gene, PDS. Studies on the expression of the PDS gene and on the function of its encoded protein, which has been named pendrin, are currently in progress. Consistent with the Pendred's syndrome phenotype, which is characterized by thyroid dysfunction associated to deafness, PDS expression has been demonstrated in the thyroid and in the inner ear. Despite its high homology to known sulfate transporters, pendrin has been shown to transport iodide and chloride, but not sulfate. Thus, it is probably devoted to regulate, at the apical membrane where it has been immunolocalized, the flux of iodide from the thyroid cell to the colloid space. The function of pendrin in the inner ear is not well understood, but it seems to function also at this level as an anion transporter. Indeed, a pronounced PDS expression has been detected in structures of the inner ear, such as the membranous labyrinth and the endolymphatic duct and sac. At this level, the possible role of pendrin could be the maintenance of the appropriate ionic composition of the endolymph. Although many questions remain to be answered, these recent achievements concerning the putative role of pendrin aid to better understand the genetic basis of the peculiar phenotype of Pendred's syndrome, which associate the dysfunction of two so different organs such as the thyroid and the inner ear.

摘要

人类遗传学的最新进展促使人们关注彭德莱德综合征及其致病基因PDS。目前正在对PDS基因的表达及其编码蛋白(已命名为pendrin)的功能进行研究。与以甲状腺功能障碍伴耳聋为特征的彭德莱德综合征表型一致,PDS已在甲状腺和内耳中表达。尽管pendrin与已知的硫酸盐转运体具有高度同源性,但已证明它能转运碘化物和氯化物,而不能转运硫酸盐。因此,它可能在其免疫定位的顶端膜处负责调节碘化物从甲状腺细胞到胶质间隙的通量。pendrin在内耳中的功能尚不清楚,但在这个层面上它似乎也作为一种阴离子转运体发挥作用。事实上,在内耳结构如膜迷路、内淋巴管和内淋巴囊等中已检测到明显的PDS表达。在这个层面上,pendrin的可能作用可能是维持内淋巴合适的离子组成。尽管仍有许多问题有待解答,但这些关于pendrin假定作用的最新成果有助于更好地理解彭德莱德综合征特殊表型的遗传基础,该综合征将甲状腺和内耳这两个如此不同的器官的功能障碍联系在一起。

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