The subapical actin cytoskeleton regulates secretion and membrane retrieval in pancreatic acinar cells.
نویسندگان
چکیده
We examined the effects of disruption of the actin cytoskeleton by cytochalasin D (cytoD) on basal and carbamylcholine-stimulated exocytosis and on compensatory membrane retrieval in pancreatic acinar cells. Although the involvement of actin in exocytosis is reasonably well established, its role in these coupled processes is not understood. Our findings suggested that cytoD inhibited stimulated secretion of amylase. However, morphometry revealed that exocytosis had occurred: the number of zymogen granules decreased, the size of the lumen increased, and large vacuolar structures continuous with the lumen formed into which amylase accumulated. Large amounts of amylase were released to the medium on removal of secretagogue and cytoD, suggesting that the subapical actin network provides contractile forces that expel the lumenal contents. Strikingly, we observed that at the apical pole of the cells where exocytosis occurred, cytoD induced an accumulation of membrane invaginations into a vastly enlarged apical membrane. These pits were often surrounded by a clathrin-like coat. Concomitantly, AP-2-, clathrin-, dynamin- and caveolin-like immunoreactivity concentrated around the enlarged lumina, suggesting that incorporation of zymogen granule membrane into the apical plasma membrane triggered the recruitment of these proteins. After wash out of cytoD and carbamylcholine and reformation of the subapical actin cytoskeleton, the coated invaginations largely disappeared in association with a reduction in lumenal size, and relocation of clathrin, AP-2, dynamin and caveolin into the cell. We suggest that the actin terminal web also controls compensatory membrane retrieval following exocytosis.
منابع مشابه
Secretin differentially sensitizes rat pancreatic acini to the effects of supramaximal stimulation with caerulein.
Supramaximal stimulation of the rat pancreas with CCK, or its analog caerulein, triggers acute pancreatitis and a number of pancreatitis-associated acinar cell changes including intracellular activation of digestive enzyme zymogens and acinar cell injury. It is generally believed that some of these various acinar cell responses to supramaximal secretagogue stimulation are interrelated and inter...
متن کاملRole of the actin cytoskeleton in acinar cell protein secretion
All eukaryotic cells, including the pancreatic acinar cell, tightly control organization of their cytoplasm which in large part relies on the cytoskeleton. The cytoskeleton is comprised of three filament types: microtubules (tubulin), intermediate filaments (keratins), and microfilaments (actin). In addition to characteristics common to all cells, the pancreatic acinar cell is a polarized epith...
متن کاملCALL FOR PAPERS Protein and Vesicle Trafficking, Cytoskeleton Cleavage of SNAP-25 and VAMP-2 impairs store-operated Ca entry in mouse pancreatic acinar cells
Rosado, Juan A., Pedro C. Redondo, Ginés M. Salido, Stewart O. Sage, and Jose A. Pariente. Cleavage of SNAP-25 and VAMP-2 impairs store-operated Ca entry in mouse pancreatic acinar cells. Am J Physiol Cell Physiol 288: C214–C221, 2005. First published September 8; doi:10.1152/ajpcell.00241.2004.—We recently reported that store-operated Ca entry (SOCE) in nonexcitable cells is likely to be media...
متن کاملA Rab11a-enriched subapical membrane compartment regulates a cytoskeleton-dependent transcytotic pathway in secretory epithelial cells of the lacrimal gland.
Despite observations that the lacrimal gland has been identified as the principal source of dimeric immunoglobulin A (dIgA) in tears, the mechanism used by lacrimal gland acinar cells (LGACs) to transcytose dIgA produced by interstitial plasma cells is not well-characterized. This study identifies a transcytotic pathway in LGACs regulated by Rab11a for polymeric immunoglobulin receptor (pIgR) a...
متن کاملI-6: Role of Actin Cytoskeleton during Mouse Sperm Acrosomal Exocytosis
Background: Mammalian sperm must undergo a process termed capacitation to become competent to fertilize an egg. Capacitation renders the sperm competent by priming the cells to undergo a rapid exocytotic event called acrosomal exocytosis that is stimulated by the zona pellucida (ZP) of the egg or progesterone. Over the years, several biochemical events have been associated with the capacitation...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Journal of cell science
دوره 112 ( Pt 1) شماره
صفحات -
تاریخ انتشار 1999