Abstract
A method is described that uses trypsin digestion combined with collagenase-hyaluronidase which produces a population of gap junction vesicles. The hexagonal lattice of subunits ("connexons") comprising the gapjunctions appears unaltered by various structural criteria and by buoyant density measurements. The gap junction vesciles are closed by either a single or a double profile of nonjunctional "membrane," which presents a smooth, particle-free fracture face. Horseradish peroxidase and cytochrome c studies have revealed that about 20% of the gap junction vesicles are impermeable to proteins 12,000 daltons or larger. The increased purity of the trypsinized junction preparation suggests that one of the disulfide reduction products of the gap-junction principal protein may be a nonjunctional contaminating peptide. The gap junction appears to be composed of a single 18,000-dalton protein, connexin, which may be reduced to a single 9,000-dalton peak. The number of peptides in this reduced peak are still unknown.
MeSH Terms
Animals
Benzamidines/pharmacology
Cell Fractionation/methods
Freeze Fracturing
Hyaluronoglucosaminidase
Intercellular Junctions/analysis,metabolism,ultrastructure
Liver/ultrastructure
Mice
Microbial Collagenase
Molecular Weight
Permeability
Phenylmethylsulfonyl Fluoride/pharmacology
Proteins/analysis
Staining and Labeling
Trypsin/pharmacology
Trypsin Inhibitors
Chemicals
Benzamidines
Proteins
Trypsin Inhibitors
Phenylmethylsulfonyl Fluoride
Hyaluronoglucosaminidase
Trypsin
Microbial Collagenase
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Goodenough D A
References (13)
13 references, click to expand
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