Keller Christian, Santos Rui Ramos, van Megen Wouter H, Loffing Johannes
Institute of Anatomy, University of Zurich, Winterthurerstrasse 190, CH- 8057, Zurich, Switzerland.
PhD Program Biomedicine, University of Zurich, Zurich, Switzerland.
Pflugers Arch. 2025 Jun;477(6):841-856. doi: 10.1007/s00424-025-03086-4. Epub 2025 May 13.
The renal thick ascending limb (TAL) plays a key role in water and ion homeostasis. Apical potassium secretion via the renal outer medullary potassium channel (ROMK) is essential for transepithelial sodium reabsorption via the furosemide-sensitive Na-K-2Cl-cotransporter and creates the electrochemical gradient for paracellular ion transport through Claudin tight junction proteins. Interestingly, the TAL exhibits transcriptomic heterogeneity and variable apical ROMK abundance. Single-cell RNA sequencing suggests that the cortical TAL consists of at least three distinct cell types, but whether ROMK distribution aligns with these types remains unclear. We analyzed perfusion-fixed mouse kidneys using RNAscope in situ hybridization (ISH), iterative indirect immunofluorescence imaging (4i multiplexing), and machine learning. ROMK mRNA expression was seen in all TAL cells. In contrast, apical ROMK protein abundance was found on almost all macula densa (MD) cells but was heterogeneous along the rest of the TAL. In the remaining TAL, only about 60% of the TAL cells had strong apical ROMK staining, while 40% lacked apical ROMK but showed weak perinuclear signals. ISH revealed that apical ROMK-positive cells express Ptger3 mRNA, whereas apical ROMK-negative cells express Foxq1 mRNA. Multiplexing analysis showed that ROMK-positive cells form Claudin-10b-positive tight junctions, while ROMK-negative cells form Claudin-16/19-positive junctions and express basolateral Kir4.1. Despite universal ROMK mRNA expression, apical ROMK distribution aligns with molecularly distinct TAL cell types. This unique ROMK expression pattern suggests functional heterogeneity for ROMK along the TAL.
肾髓袢升支粗段(TAL)在水和离子稳态中起关键作用。通过肾外髓钾通道(ROMK)进行的顶端钾分泌对于通过呋塞米敏感的Na-K-2Cl共转运体进行的跨上皮钠重吸收至关重要,并为通过Claudin紧密连接蛋白的细胞旁离子转运创造电化学梯度。有趣的是,TAL表现出转录组异质性和可变的顶端ROMK丰度。单细胞RNA测序表明,皮质TAL至少由三种不同的细胞类型组成,但ROMK的分布是否与这些类型一致仍不清楚。我们使用RNAscope原位杂交(ISH)、迭代间接免疫荧光成像(4i多重分析)和机器学习分析了灌注固定的小鼠肾脏。在所有TAL细胞中均可见ROMK mRNA表达。相比之下,顶端ROMK蛋白丰度在几乎所有致密斑(MD)细胞上都有发现,但在TAL的其余部分则是异质性的。在其余的TAL中,只有约60%的TAL细胞有强烈的顶端ROMK染色,而40%的细胞缺乏顶端ROMK,但显示出微弱的核周信号。ISH显示,顶端ROMK阳性细胞表达Ptger3 mRNA,而顶端ROMK阴性细胞表达Foxq1 mRNA。多重分析表明,ROMK阳性细胞形成Claudin-10b阳性紧密连接,而ROMK阴性细胞形成Claudin-16/19阳性连接并表达基底外侧Kir4.1。尽管ROMK mRNA普遍表达,但顶端ROMK分布与分子上不同的TAL细胞类型一致。这种独特的ROMK表达模式表明TAL上ROMK存在功能异质性。