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ATP释放的机制,这是嘌呤能动力学中的关键步骤。

Mechanisms of ATP release, the enabling step in purinergic dynamics.

作者信息

Li Ang, Banerjee Juni, Leung Chi Ting, Peterson-Yantorno Kim, Stamer W Daniel, Civan Mortimer M

机构信息

Department of Physiology, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA 19104-6085, USA.

出版信息

Cell Physiol Biochem. 2011;28(6):1135-44. doi: 10.1159/000335865. Epub 2011 Dec 16.

Abstract

The only effective intervention to slow onset and progression of glaucomatous blindness is to lower intraocular pressure (IOP). Among other modulators, adenosine receptors (ARs) exert complex regulation of IOP. Agonists of A(3)ARs in the ciliary epithelium activate Cl(-) channels, favoring increased formation of aqueous humor and elevated IOP. In contrast, stimulating A(1)ARs in the trabecular outflow pathway enhances release of matrix metalloproteinases (MMPs) from trabecular meshwork (TM) cells, reducing resistance to outflow of aqueous humor to lower IOP. These opposing actions are thought to be initiated by cellular release of ATP and its ectoenzymatic conversion to adenosine. This view is now supported by our identification of six ectoATPases in trabecular meshwork (TM) cells and by our observation that external ATP enhances TM-cell secretion of MMPs through ectoenzymatic formation of adenosine. ATP release is enhanced by cell swelling and stretch. Also, enhanced ATP release and downstream MMP secretion is one mediator of the action of actin depolymerization to reduce outflow resistance. Inflow and outflow cells share pannexin-1 and connexin hemichannel pathways for ATP release. However, vesicular release and P2X(7) release pathways were functionally limited to inflow and outflow cells, respectively, suggesting that blocking exocytosis might selectively inhibit inflow, lowering IOP.

摘要

减缓青光眼性失明的发作和进展的唯一有效干预措施是降低眼压(IOP)。在其他调节因子中,腺苷受体(ARs)对眼压发挥着复杂的调节作用。睫状体上皮中的A(3)AR激动剂可激活Cl(-)通道,有利于房水生成增加和眼压升高。相反,刺激小梁流出途径中的A(1)AR可增强小梁网(TM)细胞释放基质金属蛋白酶(MMPs),降低房水流出阻力以降低眼压。这些相反的作用被认为是由细胞释放ATP及其胞外酶转化为腺苷引发的。我们在小梁网(TM)细胞中鉴定出六种胞外ATP酶以及观察到外部ATP通过腺苷的胞外酶形成增强TM细胞分泌MMPs,这一观点现在得到了支持。细胞肿胀和拉伸会增强ATP释放。此外,增强的ATP释放和下游MMP分泌是肌动蛋白解聚降低流出阻力作用的一种介质。流入细胞和流出细胞共享pannexin-1和连接蛋白半通道途径用于ATP释放。然而,囊泡释放和P2X(7)释放途径分别在功能上局限于流入细胞和流出细胞,这表明阻断胞吐作用可能选择性地抑制流入,从而降低眼压。

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