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NHE3 在刷状缘的迁移能力在 NHERF2 依赖性刺激下增加,该刺激由溶血磷脂酸引起。

NHE3 mobility in brush borders increases upon NHERF2-dependent stimulation by lyophosphatidic acid.

机构信息

Departments of Physiology and Medicine, Gastroenterology Division, Johns Hopkins University School of Medicine, 720 Rutland Avenue, Baltimore, MD 212052, USA.

出版信息

J Cell Sci. 2010 Jul 15;123(Pt 14):2434-43. doi: 10.1242/jcs.056713. Epub 2010 Jun 22.

Abstract

The epithelial brush border (BB) Na(+)/H(+) exchanger NHE3 is associated with the actin cytoskeleton by binding both directly and indirectly to ezrin; indirect binding is via attachment to NHERF family proteins. NHE3 mobility in polarized epithelial cell BBs is restricted by the actin cytoskeleton and NHERF binding such that only approximately 30% of NHE3 in the apical domain of an OK cell line stably expressing NHERF2 is mobile, as judged by FRAP analysis. Given that levels of NHE3 are partially regulated by changes in trafficking, we investigated whether the cytoskeleton association of NHE3 was dynamic and changed as part of acute regulation to allow NHE3 trafficking. The agonist studied was lysophosphatidic acid (LPA), an inflammatory mediator, which acutely stimulates NHE3 activity by increasing the amount of NHE3 on the BBs by stimulated exocytosis. LPA acutely stimulated NHE3 activity in OK cells stably expressing NHERF2. Two conditions that totally prevented LPA stimulation of NHE3 activity only partially prevented stimulation of NHE3 mobility: the phosphoinositide 3-kinase (PI3K) inhibitor LY294002, and the NHE3F1 double mutant which has minimal direct binding of NHE3 to ezrin. These results show that LPA stimulation of NHE3 mobility occurs in two parts: (1) PI3K-dependent exocytic trafficking to the BB and (2) an increase in surface mobility of NHE3 in BBs under basal conditions. Moreover, the LPA stimulatory effect on NHE3 mobility required NHERF2. Although NHE3 and NHERF2 co-precipitated under basal conditions, they failed to co-precipitate 30 minutes after addition of LPA, whereas the physical association was re-established by 50-60 minutes. This dynamic interaction between NHERF2 and NHE3 was confirmed by acceptor photobleaching Förster Resonance energy Transfer (FRET). The restricted mobility of NHE3 in BBs under basal conditions as a result of cytoskeleton association is therefore dynamic and is reversed as part of acute LPA stimulation of NHE3. We suggest that this acute but transient increase in NHE3 mobility induced by LPA occurs via two processes: addition of NHE3 to the BB by exocytosis, a process which precedes binding of NHE3 to the actin cytoskeleton via NHERF2-ezrin, and by release of NHERF2 from the NHE3 already localized in the apical membrane, enabling NHE3 to distribute throughout the microvilli. These fractions of NHE3 make up a newly identified pool of NHE3 called the 'transit pool'. Moreover, our results show that there are two aspects of LPA signaling involved in stimulation of NHE3 activity: PI3K-dependent stimulated NHE3 exocytosis and the newly described, PI3K-independent dissociation of microvillar NHE3 from NHERF2.

摘要

上皮细胞刷状缘 (BB) Na(+)/H(+) 交换器 NHE3 通过直接和间接与埃兹蛋白结合与肌动蛋白细胞骨架相关联;间接结合是通过与 NHERF 家族蛋白的连接。在极化上皮细胞 BB 中,NHE3 的流动性受到肌动蛋白细胞骨架和 NHERF 结合的限制,因此在 OK 细胞系中,只有大约 30%的 NHE3 在稳定表达 NHERF2 的细胞系的顶域是可移动的,这可以通过 FRAP 分析来判断。鉴于 NHE3 的水平部分受到运输变化的调节,我们研究了 NHE3 与细胞骨架的结合是否是动态的,并随着急性调节的一部分而改变,以允许 NHE3 运输。所研究的激动剂是溶血磷脂酸 (LPA),一种炎症介质,通过刺激 exocytosis 增加 BB 上的 NHE3 量,从而急性刺激 NHE3 活性。LPA 急性刺激稳定表达 NHERF2 的 OK 细胞中的 NHE3 活性。完全阻止 LPA 刺激 NHE3 活性的两种条件仅部分阻止 NHE3 流动性的刺激:磷脂酰肌醇 3-激酶 (PI3K) 抑制剂 LY294002 和具有最小 NHE3 与埃兹蛋白直接结合的 NHE3F1 双突变体。这些结果表明,LPA 刺激 NHE3 流动性发生在两个部分:(1)PI3K 依赖性 exocytic 运输到 BB 和 (2)BB 中 NHE3 表面流动性在基础条件下增加。此外,LPA 对 NHE3 流动性的刺激作用需要 NHERF2。尽管 NHE3 和 NHERF2 在基础条件下共沉淀,但在加入 LPA 30 分钟后它们未能共沉淀,而物理结合在 50-60 分钟后重新建立。NHERF2 和 NHE3 之间的这种动态相互作用通过接受者光漂白Förster 共振能量转移 (FRET) 得到证实。因此,由于与细胞骨架结合,NHE3 在 BB 中的受限流动性是动态的,并作为 NHE3 的急性 LPA 刺激的一部分被逆转。我们建议,LPA 诱导的 NHE3 流动性的这种急性但短暂增加是通过两个过程发生的:通过 exocytosis 将 NHE3 添加到 BB 中,这是一个先于 NHE3 通过 NHERF2-埃兹蛋白与肌动蛋白细胞骨架结合的过程,以及通过将已经定位在上皮膜中的 NHERF2 从 NHE3 释放出来,从而使 NHE3 能够分布在整个微绒毛中。这些 NHE3 部分构成了一个新发现的 NHE3 池,称为“过渡池”。此外,我们的结果表明,LPA 信号转导涉及刺激 NHE3 活性的两个方面:PI3K 依赖性刺激的 NHE3 exocytosis 和新描述的、PI3K 独立的微绒毛 NHE3 与 NHERF2 的解离。

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