Cell polarity defines three distinct domains in pancreatic beta-cells
JOURNAL OF CELL SCIENCE
Authors: Gan, Wan J.; Zavortink, Michael; Ludick, Christine; Templin, Rachel; Webb, Robyn; Webb, Richard; Ma, Wei; Poronnik, Philip; Parton, Robert G.; Gaisano, Herbert Y.; Shewan, Annette M.; Thorn, Peter
Abstract
The structural organisation of pancreatic beta-cells in the islets of Langerhans is relatively unknown. Here, using three-dimensional (3D) two-photon, 3D confocal and 3D block-face serial electron microscopy, we demonstrate a consistent in situ polarisation of beta-cells and define three distinct cell surface domains. An apical domain located at the vascular apogee of beta-cells, defined by the location of PAR-3 (also known as PARD3) and ZO-1 (also known as TJP1), delineates an extracellular space into which adjacent beta-cells project their primary cilia. A separate lateral domain, is enriched in scribble and Dlg, and colocalises with E-cadherin and GLUT2 (also known as SLC2A2). Finally, a distinct basal domain, where the beta-cells contact the islet vasculature, is enriched in synaptic scaffold proteins such as liprin. This 3D analysis of beta-cells within intact islets, and the definition of distinct domains, provides new insights into understanding beta-cell structure and function.
The Cxadr-Adam10 complex plays pivotal roles in tight junction integrity and early trophoblast development in mice
MOLECULAR REPRODUCTION AND DEVELOPMENT
Authors: Jeong, Yelin; Ock, Sun-A; Yoo, Jae Gyu; Yu, Dae-Yeul; Choi, Inchul
Abstract
Understanding preimplantation embryo development has important implications for assisted reproductive technologies (ARTs) after the introduction of in vitro fertilisation and embryo transfer because most embryonic losses occur during pre/peri-implantation. Recent studies have shown that tight junctions (TJs) are important components for embryos to develop to the blastocyst stage. However, their biological function after cavitation has not been extensively studied. We examined TJ assembly focusing on coxsackievirus and adenovirus receptor (Cxadr) and A disintegrin and metalloproteinase 10 (Adam10) using siRNA and/or an Adam10-specific inhibitor (GI254023X). TJ-associated genes, including occludin and tight junction protein 1 (Tjp1), were downregulated in the Cxadr knockdown (KD) embryos but were unaltered in Adam10 KD embryos. However, Adam10 KD or chemical inhibition affected subcellular localisation of Adam10, Cxadr, and Tjp1, leading to disrupted TJ assembly. Furthermore, Cxadr KD or GI254023X-treated blastocysts showed a relatively smaller outgrowth area and aberrant expression of transcription factor AP-2 gamma, a trophoblast-specific marker in the in vitro embryo outgrowth assay. In summary, we demonstrated that the Cxadr-Adam10 complex might moderate TJ integrity/stability and play pivotal roles during early embryonic development. Collectively, understanding the establishment of the TJ complex and its integrity will provide insight into translational research for predicting and selecting developmental competency for ART.