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CRISPR/Cas9 基因敲除揭示了 Cubilin、megalin 和 Dab2 依赖性转录在肾脏近端小管细胞中的作用。

Cubilin-, megalin-, and Dab2-dependent transcription revealed by CRISPR/Cas9 knockout in kidney proximal tubule cells.

机构信息

Renal Electrolyte Division, Department of Medicine, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.

Department of Pediatrics, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.

出版信息

Am J Physiol Renal Physiol. 2022 Jan 1;322(1):F14-F26. doi: 10.1152/ajprenal.00259.2021. Epub 2021 Nov 8.

Abstract

The multiligand receptors megalin () and cubilin () and their endocytic adaptor protein Dab2 () play essential roles in maintaining the integrity of the apical endocytic pathway of proximal tubule (PT) cells and have complex and poorly understood roles in the development of chronic kidney disease. Here, we used RNA-sequencing and CRISPR/Cas9 knockout (KO) technology in a well-differentiated cell culture model to identify PT-specific transcriptional changes that are directly consequent to the loss of megalin, cubilin, or Dab2 expression. KO of had the greatest transcriptional effect, and nearly all genes whose expression was affected in KO and KO cells were also changed in KO cells. Pathway analysis and more granular inspection of the altered gene profiles suggested changes in pathways with immunomodulatory functions that might trigger the pathological changes observed in KO mice and patients with Donnai-Barrow syndrome. In addition, differences in transcription patterns between and KO cells suggested the possibility that altered spatial signaling by aberrantly localized receptors contributes to transcriptional changes upon the disruption of PT endocytic function. A reduction in transcripts encoding sodium-glucose cotransporter isoform 2 was confirmed in KO mouse kidney lysates by quantitative PCR analysis. Our results highlight the role of megalin as a master regulator and coordinator of ion transport, metabolism, and endocytosis in the PT. Compared with the studies in animal models, this approach provides a means to identify PT-specific transcriptional changes that are directly consequent to the loss of these target genes. Megalin and cubilin receptors together with their adaptor protein Dab2 represent major components of the endocytic machinery responsible for efficient uptake of filtered proteins by the proximal tubule (PT). Dab2 and megalin expression have been implicated as both positive and negative modulators of kidney disease. We used RNA sequencing to knock out CRISPR/Cas9 cubilin, megalin, and Dab2 in highly differentiated PT cells to identify PT-specific changes that are directly consequent to knockout of each component.

摘要

多配体受体 megalin()和 cubilin()及其内吞衔接蛋白 Dab2()在维持近端肾小管(PT)细胞顶泌性内吞途径的完整性方面发挥着重要作用,并且在慢性肾脏病的发生发展中具有复杂且尚未被充分理解的作用。在这里,我们使用 RNA 测序和 CRISPR/Cas9 敲除 (KO) 技术在一个分化良好的细胞培养模型中,鉴定了直接由 megalin、cubilin 或 Dab2 表达缺失引起的 PT 特异性转录变化。KO 具有最大的转录效应,并且在 KO 和 KO 细胞中受影响的几乎所有基因在 KO 细胞中也发生了改变。途径分析和对改变的基因谱的更详细检查表明,具有免疫调节功能的途径发生了变化,这可能触发 KO 小鼠和 Donnai-Barrow 综合征患者中观察到的病理变化。此外,KO 和 KO 细胞之间转录模式的差异表明,异常定位的受体的空间信号改变可能导致 PT 内吞功能破坏时的转录变化。通过定量 PCR 分析,在 KO 小鼠肾裂解物中证实了编码钠-葡萄糖协同转运蛋白 2 同工型的转录本减少。我们的结果强调了 megalin 作为 PT 中离子转运、代谢和内吞作用的主调控因子和协调因子的作用。与动物模型的研究相比,这种方法提供了一种识别直接由这些靶基因缺失引起的 PT 特异性转录变化的方法。megalin 和 cubilin 受体及其衔接蛋白 Dab2 共同构成了负责有效摄取被滤过蛋白的近端肾小管 (PT) 的内吞机制的主要成分。Dab2 和 megalin 的表达被认为是肾脏疾病的正调节剂和负调节剂。我们使用 RNA 测序敲除了高度分化的 PT 细胞中的 CRISPR/Cas9 cubilin、megalin 和 Dab2,以鉴定直接由每个组件缺失引起的 PT 特异性变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b1c/8698540/48e10abb61ad/f-00259-2021r01.jpg

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