Literature DB >> 28302911

Real-time insights into regulated exocytosis.

Duy T Tran1, Kelly G Ten Hagen2.   

Abstract

Real-time imaging of regulated exocytosis in secreting organs can provide unprecedented temporal and spatial detail. Here, we highlight recent advances in 3D time-lapse imaging in Drosophila salivary glands at single-granule resolution. Using fluorescently labeled proteins expressed in the fly, it is now possible to image the dynamics of vesicle biogenesis and the cytoskeletal factors involved in secretion. 3D imaging over time allows one to visualize and define the temporal sequence of events, including clearance of cortical actin, fusion pore formation, mixing of the vesicular and plasma membranes and recruitment of components of the cytoskeleton. We will also discuss the genetic tools available in the fly that allow one to interrogate the essential factors involved in secretory vesicle formation, cargo secretion and the ultimate integration of the vesicular and plasma membranes. We argue that the combination of high-resolution real-time imaging and powerful genetics provides a platform to investigate the role of any factor in regulated secretion.
© 2017. Published by The Company of Biologists Ltd.

Entities:  

Keywords:  4D imaging; Arp2; Arp3; Branched actin; Drosophila; Myosin; Regulated exocytosis; Salivary gland; Secretion; WASp

Mesh:

Year:  2017        PMID: 28302911      PMCID: PMC5399783          DOI: 10.1242/jcs.193425

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  47 in total

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Review 6.  In vivo models of mucin biosynthesis and function.

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7.  Feedback inhibition of actin on Rho mediates content release from large secretory vesicles.

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8.  A molecular switch orchestrates enzyme specificity and secretory granule morphology.

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10.  The Vacuolating Autotransporter Toxin (Vat) of Escherichia coli Causes Cell Cytoskeleton Changes and Produces Non-lysosomal Vacuole Formation in Bladder Epithelial Cells.

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