Back to Search
Start Over
Blockade of membrane transport and disassembly of the Golgi complex by expression of syntaxin 1A in neurosecretion-incompetent cells: prevention by rbSEC1
- Source :
- Journal of Cell Science, Vol. 112, No 12 (1999) pp. 1865-1877, Scopus-Elsevier
- Publication Year :
- 1999
-
Abstract
- The t-SNAREs syntaxin1A and SNAP-25, i.e. the members of the complex involved in regulated exocytosis at synapses and neurosecretory cells, are delivered to their physiological site, the plasma membrane, when transfected into neurosecretion-competent cells, such as PC12 and AtT20. In contrast, when transfection is made into cells incompetent for neurosecretion, such as those of a defective PC12 clone and the NRK fibroblasts, which have no endogenous expression of these t-SNAREs, syntaxin1A (but neither two other syntaxin family members nor SNAP-25) remains stuck in the Golgi-TGN area with profound consequences to the cell: blockade of both membrane (SNAP-25, GAT-1) and secretory (chromogranin B) protein transport to the cell surface; progressive disassembly of the Golgi complex and TGN; ultimate disappearance of the latter structures, with intermixing of their markers (mannosidase II; TGN-38) with those of the endoplasmic reticulum (calreticulin) and with syntaxin1A itself. When, however, syntaxin 1A is transfected together with rbSec1, a protein known to participate in neurosecretory exocytosis via its dynamic interaction with the t-SNARE, neither the blockade nor the alterations of the Golgi complex take place. Our results demonstrate that syntaxin1A, in addition to its role in exocytosis at the cell surface, possesses a specific potential to interfere with intracellular membrane transport and that its interaction with rbSec1 is instrumental to its physiological function not only at the plasma membrane but also within the cell. At the latter site, the rbSec1-induced conversion of syntaxin1A into a form that can be transported and protects the cell from the development of severe structural and membrane traffic alterations.
- Subjects :
- ddc:616
Neurosecretory Systems/ physiology
Cell Membrane
Vesicular Transport Proteins
Golgi Apparatus
Syntaxin 1
Biological Transport
Nerve Tissue Proteins
Cell Biology
Transfection
Neurosecretory Systems
PC12 Cells
Exocytosis
Nerve Tissue Proteins/ biosynthesis/ physiology
Cell Line
Rats
Munc18 Proteins
Cell Membrane/physiology
Antigens, Surface
Exocytosis/physiology
Animals
Antigens, Surface/ biosynthesis
Golgi Apparatus/ metabolism/ultrastructure
Biological Transport/physiology
Subjects
Details
- ISSN :
- 00219533
- Volume :
- 112
- Database :
- OpenAIRE
- Journal :
- Journal of cell science
- Accession number :
- edsair.doi.dedup.....596c8d9af2cfbebd9355f980d8948230