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HNF1B 相关性肾和肾外疾病——不断扩展的临床谱。

HNF1B-associated renal and extra-renal disease-an expanding clinical spectrum.

机构信息

Institute of Biomedical and Clinical Science, University of Exeter Medical School, Barrack Road, Exeter EX2 5DW, Devon, UK.

Renal Unit, Royal Devon and Exeter Hospital, Barrack Road, Exeter EX2 5DW, Devon, UK.

出版信息

Nat Rev Nephrol. 2015 Feb;11(2):102-12. doi: 10.1038/nrneph.2014.232. Epub 2014 Dec 23.

Abstract

Heterozygous mutations in the gene that encodes the transcription factor hepatocyte nuclear factor 1β (HNF1B) represent the most common known monogenic cause of developmental kidney disease. Renal cysts are the most frequently detected feature of HNF1B-associated kidney disease; however, other structural abnormalities, including single kidneys and renal hypoplasia, and electrolyte abnormalities can also occur. Extra-renal phenotypes might also be observed; consequently, HNF1B-associated disease is considered a multi-system disorder. Other clinical features include early-onset diabetes mellitus, pancreatic hypoplasia, genital tract malformations, abnormal liver function and early-onset gout. Heterozygous mutations in the coding region or splice sites of HNF1B, and complete gene deletion, each account for ∼50% of all cases of HNF1B-associated disease, respectively, and often arise spontaneously. There is no clear genotype-phenotype correlation, consistent with haploinsufficiency as the disease mechanism. Data from animal models suggest that HNF1B has an important function during several stages of nephrogenesis; however, the precise signalling pathways remain to be elucidated. This Review discusses the genetics and molecular pathways that lead to disease development, summarizes the reported renal and extra-renal phenotypes, and identifies areas for future research in HNF1B-associated disease.

摘要

编码转录因子肝细胞核因子 1β(HNF1B)的基因突变是已知最常见的导致发育性肾病的单基因病因。HNF1B 相关性肾病最常检测到的特征是肾囊肿;然而,也可能发生其他结构异常,包括单肾和肾发育不全,以及电解质异常。还可能观察到肾外表型;因此,HNF1B 相关性疾病被认为是一种多系统疾病。其他临床特征包括早发性糖尿病、胰腺发育不全、生殖道畸形、肝功能异常和早发性痛风。HNF1B 编码区或剪接位点的杂合突变,以及完整基因缺失,分别占 HNF1B 相关性疾病的所有病例的约 50%,并且通常是自发发生的。没有明确的基因型-表型相关性,符合单倍不足作为疾病机制。来自动物模型的数据表明,HNF1B 在肾发生的几个阶段具有重要功能;然而,确切的信号通路仍有待阐明。本综述讨论了导致疾病发展的遗传学和分子途径,总结了报道的肾内和肾外表型,并确定了 HNF1B 相关性疾病未来研究的领域。

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