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有机阴离子和阳离子 SLC22“药物”转运体(Oat1、Oat3 和 Oct1)在肾脏近端小管发育和成熟过程中的调节。

Organic anion and cation SLC22 "drug" transporter (Oat1, Oat3, and Oct1) regulation during development and maturation of the kidney proximal tubule.

机构信息

Department of Pediatrics, University of California at San Diego, La Jolla, California, United States of America.

出版信息

PLoS One. 2012;7(7):e40796. doi: 10.1371/journal.pone.0040796. Epub 2012 Jul 13.

Abstract

Proper physiological function in the pre- and post-natal proximal tubule of the kidney depends upon the acquisition of selective permeability, apical-basolateral epithelial polarity and the expression of key transporters, including those involved in metabolite, toxin and drug handling. Particularly important are the SLC22 family of transporters, including the organic anion transporters Oat1 (originally identified as NKT) and Oat3 as well as the organic cation transporter Oct1. In ex vivo cultures of metanephric mesenchyme (MM; the embryonic progenitor tissue of the nephron) Oat function was evident before completion of nephron segmentation and corresponded with the maturation of tight junctions as measured biochemically by detergent extractability of the tight junction protein, ZO-1. Examination of available time series microarray data sets in the context of development and differentiation of the proximal tubule (derived from both in vivo and in vitro/ex vivo developing nephrons) allowed for correlation of gene expression data to biochemically and functionally defined states of development. This bioinformatic analysis yielded a network of genes with connectivity biased toward Hnf4α (but including Hnf1α, hyaluronic acid-CD44, and notch pathways). Intriguingly, the Oat1 and Oat3 genes were found to have strong temporal co-expression with Hnf4α in the cultured MM supporting the notion of some connection between the transporters and this transcription factor. Taken together with the ChIP-qPCR finding that Hnf4α occupies Oat1, Oat3, and Oct1 proximal promoters in the in vivo differentiating rat kidney, the data suggest a network of genes with Hnf4α at its center plays a role in regulating the terminal differentiation and capacity for drug and toxin handling by the nascent proximal tubule of the kidney.

摘要

肾脏的近端小管在产前和产后的正常生理功能取决于获得选择性通透性、顶-基底外侧上皮极性和关键转运体的表达,包括参与代谢物、毒素和药物处理的转运体。SLC22 家族转运体尤其重要,包括有机阴离子转运体 Oat1(最初被鉴定为 NKT)和 Oat3 以及有机阳离子转运体 Oct1。在肾单位祖细胞组织(中肾嵴间充质)的体外培养中,Oat 功能在肾单位分段完成之前就很明显,并且与紧密连接的成熟相对应,这可以通过紧密连接蛋白 ZO-1 的去污剂提取来生化测量。在近端小管的发育和分化的背景下,对现有时间序列微阵列数据集进行检查(源自体内和体外/体外发育的肾单位),可以将基因表达数据与发育的生化和功能定义状态相关联。这种生物信息学分析产生了一个具有 Hnf4α 连接偏向(但包括 Hnf1α、透明质酸-CD44 和 Notch 途径)的基因网络。有趣的是,在培养的 MM 中发现 Oat1 和 Oat3 基因与 Hnf4α 具有强烈的时间共表达,这支持了转运体与该转录因子之间存在某种联系的观点。与 ChIP-qPCR 发现 Hnf4α 占据体内分化大鼠肾脏中 Oat1、Oat3 和 Oct1 近端启动子的结果相结合,数据表明以 Hnf4α 为中心的基因网络在调节新生近端肾小管的终末分化和药物及毒素处理能力方面发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/958d/3396597/39f3cd7d26bb/pone.0040796.g001.jpg

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