TY - JOUR
T1 - Reconstitution of transcytosis in SLO-permeabilized MDCK cells
T2 - Existence of an NSF-dependent fusion mechanism with the apical surface of MDCK cells
AU - Apodaca, Gerard
AU - Cardone, Michael H.
AU - Whiteheart, Sidney W.
AU - DasGupta, Bibhuti R.
AU - Mostov, Keith E.
PY - 1996/4/1
Y1 - 1996/4/1
N2 - Recently, it was demonstrated that delivery from the trans-Golgi network (TGN) to the basolateral surface of Madin-Darby canine kidney (MDCK) cells required N-ethylmaleimide-sensitive factor (NSF)-α soluble NSF attachment protein (SNAP)-SNAP receptor (SNARE) complexes, while delivery from the TGN to the apical surface was independent of NSF-αSNAP-SNARE. To determine if all traffic to the apical surface of this cell line was NSF independent, we reconstituted the transcytosis of pre-internalized IgA to the apical surface and recycling to the basolateral surface. Transcytosis and the recycling of IgA required ATP and cytosol, and both were inhibited by treatment with N-ethylmaleimide. This inhibition was reversed by the addition of recombinant NSF. Botulinum neurotoxin serotype E, which is known to cleave the 25 000 Da synaptosomal associated protein, inhibited both transcytosis and recycling, although incompletely. We conclude that membrane traffic to a target membrane is not determined by utilizing a single molecular mechanism for fusion. Rather, a target membrane, e.g. the apical plasma membrane of MDCK cells, may use multiple molecular mechanisms to fuse with incoming vesicles.
AB - Recently, it was demonstrated that delivery from the trans-Golgi network (TGN) to the basolateral surface of Madin-Darby canine kidney (MDCK) cells required N-ethylmaleimide-sensitive factor (NSF)-α soluble NSF attachment protein (SNAP)-SNAP receptor (SNARE) complexes, while delivery from the TGN to the apical surface was independent of NSF-αSNAP-SNARE. To determine if all traffic to the apical surface of this cell line was NSF independent, we reconstituted the transcytosis of pre-internalized IgA to the apical surface and recycling to the basolateral surface. Transcytosis and the recycling of IgA required ATP and cytosol, and both were inhibited by treatment with N-ethylmaleimide. This inhibition was reversed by the addition of recombinant NSF. Botulinum neurotoxin serotype E, which is known to cleave the 25 000 Da synaptosomal associated protein, inhibited both transcytosis and recycling, although incompletely. We conclude that membrane traffic to a target membrane is not determined by utilizing a single molecular mechanism for fusion. Rather, a target membrane, e.g. the apical plasma membrane of MDCK cells, may use multiple molecular mechanisms to fuse with incoming vesicles.
KW - MDCK cells
KW - NSF-dependent fusion
KW - SNARE
KW - Transcytosis
UR - https://www.scopus.com/pages/publications/0029990362
UR - https://www.scopus.com/pages/publications/0029990362#tab=citedBy
U2 - 10.1002/j.1460-2075.1996.tb00491.x
DO - 10.1002/j.1460-2075.1996.tb00491.x
M3 - Article
C2 - 8612570
AN - SCOPUS:0029990362
SN - 0261-4189
VL - 15
SP - 1471
EP - 1481
JO - EMBO Journal
JF - EMBO Journal
IS - 7
ER -