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PMID: 2460469 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Topological distribution of two connexin32 antigenic sites in intact and split rodent hepatocyte gap junctions.

The Journal of cell biology ·Vol. 107 ·No. 5 ·1988-11-00 ·Pages 1817-24

Goodenough DA, Paul DL, Jesaitis L

Abstract

The membrane topology of connexin32, a principal polypeptide of gap junctions in diverse cell types, has been studied in rat and mouse hepatocyte gap junctions using site-specific antisera raised against synthetic oligopeptides corresponding to amino acid sequences deduced from cDNA clones. Based on published hydropathicity maps and identified protease-sensitive cleavage sites, oligopeptides were synthesized corresponding to two hydrophilic domains of connexin32, one predicted to face the cytoplasm, the other predicted to be directed extracellularly. Antisera were raised to keyhole limpet hemocyanin conjugates of the oligopeptides and used to map the distribution of their antigens using indirect immunocytochemistry on isolated gap junctions. The results directly demonstrated the cytoplasmic orientation of an antigen contained within amino acids 98-124 of the connexin32 sequence. The extracellular space in intact, isolated gap junctions is too small to permit binding of antibody molecules, necessitating the experimental separation of the junctional membranes to expose their extracellular surfaces using a urea/alkali procedure. While an antigen contained within amino acids 164-189 was visualized on the extracellular surfaces of some of the separated junctional membranes, variability in the observations and in the splitting procedure left ambiguities concerning the biological relevance of the observations after the denaturing conditions necessary to separate the junctional membranes. Using a different approach, however, the antigen could be exposed in intact liver using a hypertonic disaccharide junction-splitting procedure. The period of time of antigen exposure at the cell surface appears to peak at 30 s and disappear by 2-4 min. Taken together, these data demonstrate the extracellular orientation of an antigen contained within amino acids 164-189, which may be involved in cell-cell interaction within the gap junction.

MeSH Terms
Amino Acid Sequence Animals Antibodies, Monoclonal Blotting, Western Cell Fractionation/methods Connexins Epitopes Immunohistochemistry Intercellular Junctions/immunology,ultrastructure Liver/cytology Membrane Proteins/immunology Mice Molecular Sequence Data Oligopeptides/chemical synthesis Protein Conformation Rats
Chemicals
Antibodies, Monoclonal Connexins Epitopes Membrane Proteins Oligopeptides
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Goodenough D A
Department of Anatomy and Cellular Biology, Harvard Medical School, Boston, Massachusetts 02115.
Paul D L
Jesaitis L
References (16)
16 references, click to expand
  1. Topological analysis of the major protein in isolated intact rat liver gap junctions and gap junction-derived single membrane structures.
    J Biol Chem. 1987 Jun 5;262(16):7751-63 PMID: 3034905
  2. Cloning and characterization of human and rat liver cDNAs coding for a gap junction protein.
    J Cell Biol. 1986 Sep;103(3):767-76 PMID: 2875078
  3. The permeability of isolated and in situ mouse hepatic gap junctions studied with enzymatic tracers.
    J Cell Biol. 1971 Jul;50(1):81-91 PMID: 5563453
  4. The splitting of hepatocyte gap junctions and zonulae occludentes with hypertonic disaccharides.
    J Cell Biol. 1974 Jun;61(3):575-90 PMID: 4836384
  5. In vitro formation of gap junction vesicles.
    J Cell Biol. 1976 Feb;68(2):220-31 PMID: 54358
  6. Gap junctions. Structural changes after uncoupling procedures.
    J Cell Biol. 1977 Mar;72(3):628-41 PMID: 838770
  7. Five-hour half-life of mouse liver gap-junction protein.
    J Cell Biol. 1981 Aug;90(2):521-6 PMID: 7287816
  8. Gap junction structures. IV. Asymmetric features revealed by low-irradiation microscopy.
    J Cell Biol. 1983 Jan;96(1):204-16 PMID: 6186671
  9. Preparation, characterization, and localization of antisera against bovine MP26, an integral protein from lens fiber plasma membrane.
    J Cell Biol. 1983 Mar;96(3):625-32 PMID: 6339520
  10. Zonulae occludentes in junctional complex-enriched fractions from mouse liver: preliminary morphological and biochemical characterization.
    J Cell Biol. 1984 Apr;98(4):1209-21 PMID: 6425301
  11. Detergent sensitivity and splitting of isolated liver gap junctions.
    J Membr Biol. 1984;78(2):147-55 PMID: 6425504
  12. A protein homologous to the 27,000 dalton liver gap junction protein is present in a wide variety of species and tissues.
    Cell. 1984 Nov;39(1):61-9 PMID: 6091916
  13. Gap junctions in several tissues share antigenic determinants with liver gap junctions.
    EMBO J. 1984 Oct;3(10):2261-70 PMID: 6209130
  14. Molecular cloning of cDNA for rat liver gap junction protein.
    J Cell Biol. 1986 Jul;103(1):123-34 PMID: 3013898
  15. Identification of ZO-1: a high molecular weight polypeptide associated with the tight junction (zonula occludens) in a variety of epithelia.
    J Cell Biol. 1986 Sep;103(3):755-66 PMID: 3528172
  16. Connexin43: a protein from rat heart homologous to a gap junction protein from liver.
    J Cell Biol. 1987 Dec;105(6 Pt 1):2621-9 PMID: 2826492
Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
ISSN
0021-9525
Published
1988-11-00
Pages
1817-24
Language
English
Region
United States
NLM ID
0375356
PMCID
PMC2115343
Subset
IM
Grants
NIGMS NIH HHS · GM18974 · United States
NIGMS NIH HHS · GM37751 · United States
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