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紧密连接密封的调控:表皮生长因子的作用

Control of tight junctional sealing: role of epidermal growth factor.

作者信息

Flores-Benítez D, Ruiz-Cabrera A, Flores-Maldonado C, Shoshani L, Cereijido M, Contreras R G

机构信息

Department of Physiology, Universidad Nacional Autónoma de México, México.

出版信息

Am J Physiol Renal Physiol. 2007 Feb;292(2):F828-36. doi: 10.1152/ajprenal.00369.2006. Epub 2006 Oct 31.

Abstract

Epithelia can adjust the permeability of their paracellular permeation route to physiological requirements, pathological conditions, and pharmacological challenges. This is reflected by a transepithelial electrical resistance (TER) ranging from a few tenth to several thousands Omega.cm(2), depending on the degree of sealing of the tight junction (TJ). The present work is part of an effort to understand the causes and mechanisms underlying these adaptations. We observed that an extract of human urine (hDLU) increases TER in a concentration- and time-dependent manner and is more effective when added from the basolateral side of cultured monolayers of Madin-Darby canine kidney cells than from the apical one. We found that its main TER-increasing component is epidermal growth factor (hEGF), as depletion of this peptide with specific antibodies, or inhibition of its receptor with PD153035, abolishes its effect. Since the permeability of the TJ depends on the expression of several species of membrane proteins, chiefly claudins, we explored whether hDLU can affect five members of the claudin family, the three known members of the ZO family, and occludin. EGF present in hDLU decreases the content of claudins-1 and -2 as well as delocalizes them from the TJ and increases the content of claudin-4. As expected from the fact that the degree of sealing of the TJ must be a physiologically regulated parameter, besides of hEGF, we also found that hDLU appears to contain also other components that decrease TER, claudin-4 and -7, and that seem to act with different kinetics than the TER-increasing ones.

摘要

上皮细胞能够根据生理需求、病理状况和药物刺激来调节其细胞旁渗透途径的通透性。这一点通过跨上皮电阻(TER)得以体现,TER值范围从几十分之一到数千欧姆·厘米²不等,具体取决于紧密连接(TJ)的密封程度。目前的工作是为理解这些适应性变化背后的原因和机制所做努力的一部分。我们观察到,人尿提取物(hDLU)能以浓度和时间依赖性方式增加TER,并且当从培养的Madin-Darby犬肾细胞单层的基底外侧添加时比从顶端添加更有效。我们发现其增加TER的主要成分是表皮生长因子(hEGF),因为用特异性抗体耗尽该肽或用PD153035抑制其受体可消除其作用。由于TJ的通透性取决于几种膜蛋白的表达,主要是闭合蛋白,我们探究了hDLU是否能影响闭合蛋白家族的五个成员、ZO家族的三个已知成员以及闭合蛋白。hDLU中存在的EGF会降低闭合蛋白-1和-2的含量,并使其从TJ处脱离定位,同时增加闭合蛋白-4的含量。鉴于TJ的密封程度必定是一个受生理调节的参数,除了hEGF之外,我们还发现hDLU似乎还含有其他降低TER、闭合蛋白-4和-7的成分,并且这些成分的作用动力学似乎与增加TER的成分不同。

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