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转录调节因子 RBP-J 调节肾素细胞的数量和可塑性。

Transcriptional regulator RBP-J regulates the number and plasticity of renin cells.

机构信息

Department of Pediatrics, School of Medicine, University of Virginia, Charlottesville, VA 22908, USA.

出版信息

Physiol Genomics. 2011 Sep 8;43(17):1021-8. doi: 10.1152/physiolgenomics.00061.2011. Epub 2011 Jul 12.

Abstract

Renin-expressing cells are crucial in the control of blood pressure and fluid-electrolyte homeostasis. Notch receptors convey cell-cell signals that may regulate the renin cell phenotype. Because the common downstream effector for all Notch receptors is the transcription factor RBP-J, we used a conditional knockout approach to delete RBP-J in cells of the renin lineage. The resultant RBP-J conditional knockout (cKO) mice displayed a severe reduction in the number of renin-positive juxtaglomerular apparatuses (JGA) and a reduction in the total number of renin positive cells per JGA and along the afferent arterioles. This reduction in renin protein was accompanied by a decrease in renin mRNA expression, decreased circulating renin, and low blood pressure. To investigate whether deletion of RBP-J altered the ability of mice to increase the number of renin cells normally elicited by a physiological threat, we treated RBP-J cKO mice with captopril and sodium depletion for 10 days. The resultant treated RBP-J cKO mice had a 65% reduction in renin mRNA levels (compared with treated controls) and were unable to increase circulating renin. Although these mice attempted to increase the number of renin cells, the cells were unusually thin and had few granules and barely detectable amounts of immunoreactive renin. As a consequence, the cells were incapable of fully adopting the endocrine phenotype of a renin cell. We conclude that RBP-J is required to maintain basal renin expression and the ability of smooth muscle cells along the kidney vasculature to regain the renin phenotype, a fundamental mechanism to preserve homeostasis.

摘要

肾素表达细胞在血压和液体电解质稳态的控制中起着至关重要的作用。Notch 受体传递细胞间信号,可能调节肾素细胞表型。由于所有 Notch 受体的共同下游效应因子是转录因子 RBP-J,我们使用条件性敲除方法在肾素谱系细胞中删除 RBP-J。所得的 RBP-J 条件性敲除 (cKO) 小鼠显示出肾素阳性肾小球旁器 (JGA) 的数量严重减少,以及每个 JGA 和沿入球小动脉的肾素阳性细胞总数减少。肾素蛋白的减少伴随着肾素 mRNA 表达的减少、循环肾素的减少和血压降低。为了研究 RBP-J 的缺失是否改变了小鼠在生理威胁下正常增加肾素细胞数量的能力,我们用卡托普利和钠耗竭处理 RBP-J cKO 小鼠 10 天。经处理的 RBP-J cKO 小鼠的肾素 mRNA 水平降低了 65%(与经处理的对照相比),并且无法增加循环肾素。尽管这些小鼠试图增加肾素细胞的数量,但这些细胞异常薄,颗粒很少,几乎检测不到免疫反应性肾素。因此,这些细胞无法完全获得肾素细胞的内分泌表型。我们得出结论,RBP-J 是维持基础肾素表达所必需的,也是维持肾脏血管平滑肌细胞恢复肾素表型的能力所必需的,这是维持内环境稳定的基本机制。

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