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利用下一代测序和果蝇肾脏模型探索 NUP93 变异体在类固醇耐药性肾病综合征中的相关性。

Exploring the relevance of NUP93 variants in steroid-resistant nephrotic syndrome using next generation sequencing and a fly kidney model.

机构信息

Bristol Renal and Children's Renal Unit, Bristol Medical School, University of Bristol, Whitson Street, Bristol, BS1 3NY, UK.

Nuffield Department of Medicine, University of Oxford, Oxford, UK.

出版信息

Pediatr Nephrol. 2022 Nov;37(11):2643-2656. doi: 10.1007/s00467-022-05440-5. Epub 2022 Feb 24.

Abstract

BACKGROUND

Variants in genes encoding nuclear pore complex (NPC) proteins are a newly identified cause of paediatric steroid-resistant nephrotic syndrome (SRNS). Recent reports describing NUP93 variants suggest these could be a significant cause of paediatric onset SRNS. We report NUP93 cases in the UK and demonstrate in vivo functional effects of Nup93 depletion in a fly (Drosophila melanogaster) nephrocyte model.

METHODS

Three hundred thirty-seven paediatric SRNS patients from the National cohort of patients with Nephrotic Syndrome (NephroS) were whole exome and/or whole genome sequenced. Patients were screened for over 70 genes known to be associated with Nephrotic Syndrome (NS). D. melanogaster Nup93 knockdown was achieved by RNA interference using nephrocyte-restricted drivers.

RESULTS

Six novel homozygous and compound heterozygous NUP93 variants were detected in 3 sporadic and 2 familial paediatric onset SRNS characterised histologically by focal segmental glomerulosclerosis (FSGS) and progressing to kidney failure by 12 months from clinical diagnosis. Silencing of the two orthologs of human NUP93 expressed in D. melanogaster, Nup93-1, and Nup93-2 resulted in significant signal reduction of up to 82% in adult pericardial nephrocytes with concomitant disruption of NPC protein expression. Additionally, nephrocyte morphology was highly abnormal in Nup93-1 and Nup93-2 silenced flies surviving to adulthood.

CONCLUSION

We expand the spectrum of NUP93 variants detected in paediatric onset SRNS and demonstrate its incidence within a national cohort. Silencing of either D. melanogaster Nup93 ortholog caused a severe nephrocyte phenotype, signaling an important role for the nucleoporin complex in podocyte biology. A higher resolution version of the Graphical abstract is available as Supplementary information.

摘要

背景

核孔复合体(NPC)蛋白编码基因的变异是小儿类固醇耐药性肾病综合征(SRNS)新发现的病因。最近有报道描述了 NUP93 变异,提示其可能是小儿发病 SRNS 的一个重要病因。我们报告了英国的 NUP93 病例,并在果蝇(黑腹果蝇)肾细胞模型中证明了 Nup93 耗竭的体内功能效应。

方法

对来自全国肾病综合征患者队列(NephroS)的 337 例小儿 SRNS 患者进行全外显子组和/或全基因组测序。对已知与肾病综合征(NS)相关的 70 多个基因进行了患者筛查。使用肾细胞特异性驱动子通过 RNA 干扰实现了 D. melanogaster Nup93 的敲低。

结果

在 3 例散发性和 2 例家族性小儿发病 SRNS 中发现了 6 个新的纯合子和复合杂合 NUP93 变异,这些变异通过组织学表现为局灶节段性肾小球硬化(FSGS),从临床诊断到肾功能衰竭的进展时间为 12 个月。在 D. melanogaster 中表达的人 NUP93 的两个同源物 Nup93-1 和 Nup93-2 的沉默导致成人心包肾细胞中信号减少高达 82%,同时 NPC 蛋白表达中断。此外,在成年果蝇中,Nup93-1 和 Nup93-2 沉默的肾细胞形态高度异常。

结论

我们扩展了在小儿发病 SRNS 中检测到的 NUP93 变异谱,并在全国队列中证明了其发病率。D. melanogaster 中任一 Nup93 同源物的沉默都会导致严重的肾细胞表型,表明核孔复合体在足细胞生物学中具有重要作用。图形摘要的更高分辨率版本可作为补充信息提供。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/579e/9489583/18c7865a84a8/467_2022_5440_Fig1_HTML.jpg

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