The Journal of Cell Biology · 1999 · 734 citations · 32 references
Tight junction strands are laterally paired between adjacent cells to seal the extracellular space, and claudin‑1 and ‑2 can reconstitute such paired strands when expressed in L fibroblasts. The study aimed to determine whether heterogeneous claudins form heteromeric tight junction strands and whether they interact heterophilically between paired strands. The authors cotransfected pairs of claudin‑1, ‑2, or ‑3 into L cells and visualized their co‑concentration at cell–cell borders as elaborate networks. Immuno‑replica EM and coculture experiments showed that claudin‑1, ‑2, and ‑3 are incorporated into individual tight junction strands, that claudin‑3 strands laterally associate with both claudin‑1 and ‑2 strands while claudin‑1 strands do not associate with claudin‑2 strands, indicating that heterogeneous claudins can interact within and between strands in a selective manner, thereby expanding strand diversity.
In tight junctions (TJs), TJ strands are associated laterally with those of adjacent cells to form paired strands to eliminate the extracellular space. Claudin-1 and -2, integral membrane proteins of TJs, reconstitute paired TJ strands when transfected into L fibroblasts. Claudins comprise a multigene family and more than two distinct claudins are coexpressed in single cells, raising the questions of whether heterogeneous claudins form heteromeric TJ strands and whether claudins interact between each of the paired strands in a heterophilic manner. To answer these questions, we cotransfected two of claudin-1, -2, and -3 into L cells, and detected their coconcentration at cell–cell borders as elaborate networks. Immunoreplica EM confirmed that distinct claudins were coincorporated into individual TJ strands. Next, two L transfectants singly expressing claudin-1, -2, or -3 were cocultured and we found that claudin-3 strands laterally associated with claudin-1 and -2 strands to form paired strands, whereas claudin-1 strands did not interact with claudin-2 strands. We concluded that distinct species of claudins can interact within and between TJ strands, except in some combinations. This mode of assembly of claudins could increase the diversity of the structure and functions of TJ strands.
32
JUNCTIONAL COMPLEXES IN VARIOUS EPITHELIA
Marilyn G. Farquhar, George E. Palade · The Journal of Cell Biology · 1963 · 3.6K citations · Full text
Cytoskeleton, Low Density, Anatomy +18
Occludin: a novel integral membrane protein localizing at tight junctions.
Mikio Furuse, Tetsuaki Hirase, Masahiko Itoh et al. · The Journal of Cell Biology · 1993 · 2.5K citations · Full text