A Sec1‐Related Vesicle‐Transport Protein that is Expressed Predominantly in Epithelial Cells
pmid: 8774707
A Sec1‐Related Vesicle‐Transport Protein that is Expressed Predominantly in Epithelial Cells
Sec1‐related proteins are involved in docking and fusion of transport vesicles in eukaryotic cells. Here we report the cloning and molecular characterization of a Sec1‐related protein expressed in the MDCK epithelial cell line. This protein represents a canine counterpart of the murine Munc‐18–2/Munc‐18b/muSec1 protein, displays 93% amino acid identity with these proteins, has a similar tissue mRNA expression pattern, and associatesin vitrowith syntaxins 1A, 2, and 3.In situhybridization analysis of embryonic mouse tissues revealed prominent expression of the munc‐18‐2 mRNA in the epithelia of several tissues. Cell‐fractionation studies demonstrated that the majority of Munc‐18‐2 is membrane associated. Most of the protein is washed off the membranes by sodium carbonate, pH 11.5. However, the protein is poorly solubilized by detergent treatment. The Munc‐18‐2 protein was localized, by immunofluorescence microscopy, to the plasma membrane of MDCK cells, and is apically distributed in the epithelial cells of mouse tissues. When overexpressed in COS‐1 cells, the protein appeared to be largely cytosolic. However, upon expression with syntaxin 1A, it displayed a shift to the plasma membrane, where the two proteins colocalized. These results identified Munc‐18‐2 as a predominantly epithelial vesicle‐transport protein with a polarized distribution and provided novelin vivoevidence for the association of Sec1‐related proteins with members of the syntaxin family.
- University of Helsinki Finland
- VTT Technical Research Centre of Finland Finland
Membranes, Sequence Homology, Amino Acid, Qa-SNARE Proteins, Molecular Sequence Data, Gene Expression, Membrane Proteins, Biological Transport, Epithelial Cells, Nerve Tissue Proteins, Sequence Analysis, DNA, Kidney, Epithelium, Cell Compartmentation, Mice, Dogs, Munc18 Proteins, Animals, Amino Acid Sequence, Cloning, Molecular, Cells, Cultured
Membranes, Sequence Homology, Amino Acid, Qa-SNARE Proteins, Molecular Sequence Data, Gene Expression, Membrane Proteins, Biological Transport, Epithelial Cells, Nerve Tissue Proteins, Sequence Analysis, DNA, Kidney, Epithelium, Cell Compartmentation, Mice, Dogs, Munc18 Proteins, Animals, Amino Acid Sequence, Cloning, Molecular, Cells, Cultured
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