对接(动物)
连接蛋白
细胞生物学
缝隙连接
基因亚型
流式细胞术
细胞质
化学
生物
生物物理学
细胞内
生物化学
分子生物学
基因
医学
护理部
作者
Elizabeth Ransey,Kirill Chesnov,Nenad Bursac,Kafui Dzirasa
标识
DOI:10.1101/2021.06.07.447352
摘要
ABSTRACT Gap junctions are membrane spanning channels that connect the cytoplasm of apposed cells, allowing for the passage of small molecules and ions. They are formed by the connexin (Cx) family of proteins which assemble into hexameric hemichannels on each cell and dock to create gap junctional channels between two cells. Despite importance of various Cx isoforms in human physiology and disease, available tools for screening and discriminating their interactions such as hemichannel compatibility, docking and permeability are limited. Here, we developed FETCH ( f low e nabled t racking of c onnexosomes in H EK cells), a method which utilizes the generation of annular gap junctions (connexosomes) as downstream indicators of hemichannel compatibility for intercellular docking. First, we show that fluorescent connexosomes create a cellular phenotype that is detectable by flow cytometry analysis. We then show that FETCH identifies homotypic and heterotypic docking of many single isoform connexin hemichannels. Finally, we demonstrate that FETCH captures the impact of disease-relevant connexin protein mutations on gap junction formation. Thus, we establish a new flow cytometry-based method that is amenable to the high-throughput classification of gap junction hemichannel docking.
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