比较Bbs10完全敲除表型与特异性肾上皮敲除表型突出了小鼠肾缺陷和全身失活之间的联系。

Q2 Biochemistry, Genetics and Molecular Biology Cilia Pub Date : 2015-08-13 eCollection Date: 2015-01-01 DOI:10.1186/s13630-015-0019-8
Noëlle Cognard, Maria J Scerbo, Cathy Obringer, Xiangxiang Yu, Fanny Costa, Elodie Haser, Dane Le, Corinne Stoetzel, Michel J Roux, Bruno Moulin, Hélène Dollfus, Vincent Marion
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引用次数: 28

摘要

背景:Bardet-Biedl综合征(BBS)是一种遗传异质性纤毛病,其临床主要特征包括视网膜变性、肥胖和肾功能障碍。迄今为止,已鉴定出20个BBS基因,其中BBS10是在全球近20%的BBS患者中发现突变的主要BBS基因。它编码BBS10蛋白,该蛋白形成位于初级纤毛基底的伴侣复合体的一部分。BBS患者的肾功能障碍是人类患者发病的主要原因之一,最初与肾上皮细胞水重吸收损伤相关的尿浓度缺陷有关。本研究的目的是研究和比较Bbs10总体失活(Bbs10(-/-))与特异性肾上皮细胞失活(Bbs10 (fl/fl))的影响;Cdh16-Cre(+ / -))。结果:我们生成了Bbs10(-/-)和Bbs10 (fl/fl);Cadh16-Cre(+/-)小鼠模型并进行表征。Bbs10(-/-)小鼠出现肥胖、视网膜变性、肾小球结构缺陷、与高循环精氨酸抗利尿素(AVP)浓度相关的多尿,以及空泡化但纤毛化的肾上皮细胞。另一方面,Bbs10 (fl/fl);Cadh16-Cre(+/-)小鼠未表现出可检测到的损伤。结论:这些数据强调了全身性Bbs10失活对避免肾功能障碍的重要性,而肾上皮中Bbs10的靶向缺失似乎是无害的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Comparing the Bbs10 complete knockout phenotype with a specific renal epithelial knockout one highlights the link between renal defects and systemic inactivation in mice.

Background: Bardet-Biedl Syndrome (BBS) is a genetically heterogeneous ciliopathy with clinical cardinal features including retinal degeneration, obesity and renal dysfunction. To date, 20 BBS genes have been identified with BBS10 being a major BBS gene found to be mutated in almost 20 percent of all BBS patients worldwide. It codes for the BBS10 protein which forms part of a chaperone complex localized at the basal body of the primary cilium. Renal dysfunction in BBS patients is one of the major causes of morbidity in human patients and is associated initially with urinary concentration defects related to water reabsorption impairment in renal epithelial cells. The aim of this study was to study and compare the impact of a total Bbs10 inactivation (Bbs10 (-/-)) with that of a specific renal epithelial cells inactivation (Bbs10  (fl/fl) ; Cdh16-Cre (+/-)).

Results: We generated the Bbs10 (-/-) and Bbs10  (fl/fl) ; Cadh16-Cre (+/-) mouse model and characterized them. Bbs10 (-/-) mice developed obesity, retinal degeneration, structural defects in the glomeruli, polyuria associated with high circulating arginine vasopressin (AVP) concentrations, and vacuolated, yet ciliated, renal epithelial cells. On the other hand, the Bbs10  (fl/fl) ; Cadh16-Cre (+/-)mice displayed no detectable impairment.

Conclusions: These data highlight the importance of a systemic Bbs10 inactivation to trigger averted renal dysfunction whereas a targeted absence of BBS10 in the renal epithelium is seemingly non-deleterious.

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Cilia
Cilia Biochemistry, Genetics and Molecular Biology-Cell Biology
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