动态单细胞转录组学定义了肾脏FGF23/KL的生物活性和新的片段特异性炎症靶点。

IF 14.8 1区 医学 Q1 UROLOGY & NEPHROLOGY Kidney international Pub Date : 2025-01-17 DOI:10.1016/j.kint.2024.12.014
Rafiou Agoro, Jered Myslinski, Yamil G Marambio, Danielle Janosevic, Kayleigh N Jennings, Sheng Liu, Lainey M Hibbard, Fang Fang, Pu Ni, Megan L Noonan, Emmanuel Solis, Xiaona Chu, Yue Wang, Pierre C Dagher, Yunlong Liu, Jun Wan, Takashi Hato, Kenneth E White
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引用次数: 0

摘要

成纤维细胞生长因子23 (FGF23)通过其辅助受体αKlotho (KL)对磷酸盐代谢提供关键控制,这在罕见和非常常见的综合征中都发生改变。然而,决定肾脏FGF23功能的时空机制仍然知之甚少。因此,开发修饰特定fgf23指示通路的方法已被证明是有问题的。本实验中,野生型小鼠分别注射rFGF23 1、4和12h,在单细胞分辨率下测定肾脏FGF23的生物活性。计算分析鉴定出不同的上皮细胞、内皮细胞、基质细胞和免疫细胞簇,差异表达分析在每个时间点独特地跟踪FGF23的生物活性。FGF23的作用与性别无关,但主要依赖于近端小管(S1-S3段)和远端卷曲桶/连接小管细胞亚群内的构成性KL表达。时间依赖于kl的FGF23反应驱动了独特和短暂的细胞身份,包括通过早期(转录因子ap -1相关)和后期(起始因子EIF2信号传导)转录调控的关键mapk信号通路和维生素d代谢途径中的基因。将来自稳定表达KL的细胞系的ATACseq/RNAseq数据与体内scRNAseq相结合,确定了mapk依赖性基因的基因组可达性变化,包括鉴定fgf23依赖性早期生长因子-1远端增强子。最后,我们发现FGF23介导的MAPK信号和通过转录因子NF-κB激活促炎TNF受体之间存在意想不到的串扰,这阻断了FGF23在体外和体内的生物活性。总的来说,我们的发现揭示了单细胞水平上可能影响fgf23依赖性疾病机制的新途径。
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Dynamic single cell transcriptomics defines kidney FGF23/KL bioactivity and novel segment-specific inflammatory targets.

Fibroblast growth factor 23 (FGF23) via its coreceptor αKlotho (KL) provides critical control of phosphate metabolism, which is altered in both rare and very common syndromes. However, the spatial-temporal mechanisms dictating kidney FGF23 functions remain poorly understood. Thus, developing approaches to modify specific FGF23-dictated pathways has proven problematic. Herein, wild type mice were injected with rFGF23 for one, four and 12h and kidney FGF23 bioactivity was determined at single cell resolution. Computational analysis identified distinct epithelial, endothelial, stromal, and immune cell clusters, with differential expressional analysis uniquely tracking FGF23 bioactivity at each time point. FGF23 actions were sex independent but critically relied upon constitutive KL expression mapped within proximal tubule (segments S1-S3) and distal convoluted tub/connecting tubule cell sub-populations. Temporal KL-dependent FGF23 responses drove unique and transient cellular identities, including genes in key MAPK-signaling and vitamin D-metabolic pathways via early- (transcription factor AP-1-related) and late-phase (initiation factor EIF2 signaling) transcriptional regulons. Combining ATACseq/RNAseq data from a cell line stably expressing KL with the in vivo scRNAseq pinpointed genomic accessibility changes in MAPK-dependent genes, including the identification of FGF23-dependent early growth factor-1 distal enhancers. Finally, we identified unexpected crosstalk between FGF23-mediated MAPK signaling and pro inflammatory TNF receptor activation via transcription factor NF-κB, which blocked FGF23 bioactivity in vitro and in vivo. Collectively, our findings have uncovered novel pathways at the single cell level that likely influence FGF23-dependent disease mechanisms.

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来源期刊
Kidney international
Kidney international 医学-泌尿学与肾脏学
CiteScore
23.30
自引率
3.10%
发文量
490
审稿时长
3-6 weeks
期刊介绍: Kidney International (KI), the official journal of the International Society of Nephrology, is led by Dr. Pierre Ronco (Paris, France) and stands as one of nephrology's most cited and esteemed publications worldwide. KI provides exceptional benefits for both readers and authors, featuring highly cited original articles, focused reviews, cutting-edge imaging techniques, and lively discussions on controversial topics. The journal is dedicated to kidney research, serving researchers, clinical investigators, and practicing nephrologists.
期刊最新文献
Editorial Board Table of Contents in this issue "Star chain pattern" of focal emphysematous pyelonephritis in polycystic kidney disease Hepatic venous outflow obstruction in autosomal dominant polycystic kidney disease
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