Weber Christopher R, Liang Guo Hua, Wang Yitang, Das Sudipto, Shen Le, Yu Alan S L, Nelson Deborah J, Turner Jerrold R
Department of Pathology, The University of Chicago, Chicago, United States.
Division of Nephrology and Hypertension, University of Kansas Medical Center, Kansas City, United States.
Elife. 2015 Nov 14;4:e09906. doi: 10.7554/eLife.09906.
Intercellular tight junctions form selectively permeable barriers that seal the paracellular space. Trans-tight junction flux has been measured across large epithelial surfaces, but conductance across individual channels has never been measured. We report a novel trans-tight junction patch clamp technique that detects flux across individual claudin-2 channels within the tight junction of cultured canine renal tubule or human intestinal epithelial monolayers. In both cells, claudin-2 channels display conductances of ~90 pS. The channels are gated, strictly dependent on claudin-2 expression, and display size- and charge-selectivity typical of claudin-2. Kinetic analyses indicate one open and two distinct closed states. Conductance is symmetrical and reversible, characteristic of a passive, paracellular process, and blocked by reduced temperature or site-directed mutagenesis and chemical derivatization of the claudin-2 pore. We conclude that claudin-2 forms gated paracellular channels and speculate that modulation of tight junction channel gating kinetics may be an unappreciated mechanism of barrier regulation.
细胞间紧密连接形成选择性渗透屏障,封闭细胞旁间隙。跨紧密连接通量已在大的上皮表面进行测量,但单个通道的电导从未被测量过。我们报告了一种新型的跨紧密连接膜片钳技术,该技术可检测培养的犬肾小管或人肠上皮单层紧密连接内单个claudin - 2通道的通量。在这两种细胞中,claudin - 2通道的电导约为90 pS。这些通道是门控的,严格依赖于claudin - 2的表达,并表现出claudin - 2典型的大小和电荷选择性。动力学分析表明存在一个开放状态和两个不同的关闭状态。电导是对称且可逆的,这是被动细胞旁过程的特征,并被降低的温度、定点诱变以及claudin - 2孔的化学衍生作用所阻断。我们得出结论,claudin - 2形成门控细胞旁通道,并推测紧密连接通道门控动力学的调节可能是一种未被重视的屏障调节机制。