Hunter Andrew W, Gourdie Robert G
Department of Cell Biology and Anatomy, Cardiovascular Developmental Biology Center, Medical University of South Carolina, Charleston, South Carolina 29425, USA.
Cell Commun Adhes. 2008 May;15(1):55-63. doi: 10.1080/15419060802014370.
Zonula occludens (ZO)-1 is emerging as a central player in the control of gap junction (GJ) dynamics. Previously the authors reported that ZO-1 localizes preferentially to the periphery of Cx43 GJs. How ZO-1 arrives at GJ edges is unknown, but this targeting might involve we established interaction between the Cx43 C-terminus and the PDZ2 domain of ZO-1. Here the show that despite blocking the canonical PDZ2-mediated interaction by fusion of GFP to the C-terminus of Cx43, ZO-1 continued to target to domains juxtaposed with the edges of GJs comprised solely of tagged Cx43. This edge-association was not abolished by deletion of PDZ2 from ZO-1, as mutant ZO-1 also targeted to the periphery of GJs composed of either tagged or untagged Cx43. Additionally, ZO-2 was found colocalized with ZO-1 at GJ edges. These data demonstrate that ZO-1 targets to GJ edges independently of several known PDZ2-mediated interactions, including ZO-1 homodimerization, heterodimerization with ZO-2, and direct ZO-1 binding to the C-terminal residues of Cx43.
紧密连接蛋白(ZO)-1正逐渐成为控制间隙连接(GJ)动态的核心分子。此前作者报道ZO-1优先定位于Cx43 GJ的周边。ZO-1如何到达GJ边缘尚不清楚,但这种靶向定位可能涉及我们已确定的Cx43 C末端与ZO-1的PDZ2结构域之间的相互作用。在此他们表明,尽管通过将绿色荧光蛋白(GFP)融合到Cx43的C末端来阻断经典的PDZ2介导的相互作用,但ZO-1仍继续靶向仅由标记的Cx43组成的GJ边缘并列的区域。从ZO-1中删除PDZ2并没有消除这种边缘关联,因为突变型ZO-1也靶向由标记或未标记的Cx43组成的GJ周边。此外,发现ZO-2与ZO-1在GJ边缘共定位。这些数据表明,ZO-1靶向GJ边缘独立于几种已知的PDZ2介导的相互作用,包括ZO-1同二聚化、与ZO-