Distinct role of rab27a in granule movement at the plasma membrane and in the cytosol of NK cells.

Protocols were developed to automate image analysis and to track the movement of thousands of vesicular compartments in live cells. Algorithms were used to discriminate among different types of movement (e.g. random, caged, and directed). We applied these tools to investigate the steady-state distri...

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Main Authors: Dongfang Liu, Tobias Meckel, Eric O Long
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-09-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2943471?pdf=render
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spelling doaj-fe8781e2a2c0439d92b1b43ada8068e32020-11-25T01:49:45ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-09-0159e1287010.1371/journal.pone.0012870Distinct role of rab27a in granule movement at the plasma membrane and in the cytosol of NK cells.Dongfang LiuTobias MeckelEric O LongProtocols were developed to automate image analysis and to track the movement of thousands of vesicular compartments in live cells. Algorithms were used to discriminate among different types of movement (e.g. random, caged, and directed). We applied these tools to investigate the steady-state distribution and movement of lytic granules (LG) in live natural killer (NK) cells by high-speed 3-dimensional (3D) spinning disc confocal and 2-dimensional total internal reflection fluorescence microscopy. Both mouse NK cells and a human NK cell line deficient in the small GTPase Rab27a were examined. The unbiased analysis of large datasets led to the following observations and conclusions. The majority of LG in the cytosol and at the plasma membrane of unstimulated NK cells are mobile. The use of inhibitors indicated that movement in the cytosol required microtubules but not actin, whereas movement at the plasma membrane required both. Rab27a deficiency resulted in fewer LG, and in a reduced fraction of mobile LG, at the plasma membrane. In contrast, loss of Rab27a increased the fraction of mobile LG and the extent of their movement in the cytosol. Therefore, in addition to its documented role in LG delivery to the plasma membrane, Rab27a may restrict LG movement in the cytosol.http://europepmc.org/articles/PMC2943471?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Dongfang Liu
Tobias Meckel
Eric O Long
spellingShingle Dongfang Liu
Tobias Meckel
Eric O Long
Distinct role of rab27a in granule movement at the plasma membrane and in the cytosol of NK cells.
PLoS ONE
author_facet Dongfang Liu
Tobias Meckel
Eric O Long
author_sort Dongfang Liu
title Distinct role of rab27a in granule movement at the plasma membrane and in the cytosol of NK cells.
title_short Distinct role of rab27a in granule movement at the plasma membrane and in the cytosol of NK cells.
title_full Distinct role of rab27a in granule movement at the plasma membrane and in the cytosol of NK cells.
title_fullStr Distinct role of rab27a in granule movement at the plasma membrane and in the cytosol of NK cells.
title_full_unstemmed Distinct role of rab27a in granule movement at the plasma membrane and in the cytosol of NK cells.
title_sort distinct role of rab27a in granule movement at the plasma membrane and in the cytosol of nk cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-09-01
description Protocols were developed to automate image analysis and to track the movement of thousands of vesicular compartments in live cells. Algorithms were used to discriminate among different types of movement (e.g. random, caged, and directed). We applied these tools to investigate the steady-state distribution and movement of lytic granules (LG) in live natural killer (NK) cells by high-speed 3-dimensional (3D) spinning disc confocal and 2-dimensional total internal reflection fluorescence microscopy. Both mouse NK cells and a human NK cell line deficient in the small GTPase Rab27a were examined. The unbiased analysis of large datasets led to the following observations and conclusions. The majority of LG in the cytosol and at the plasma membrane of unstimulated NK cells are mobile. The use of inhibitors indicated that movement in the cytosol required microtubules but not actin, whereas movement at the plasma membrane required both. Rab27a deficiency resulted in fewer LG, and in a reduced fraction of mobile LG, at the plasma membrane. In contrast, loss of Rab27a increased the fraction of mobile LG and the extent of their movement in the cytosol. Therefore, in addition to its documented role in LG delivery to the plasma membrane, Rab27a may restrict LG movement in the cytosol.
url http://europepmc.org/articles/PMC2943471?pdf=render
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AT ericolong distinctroleofrab27aingranulemovementattheplasmamembraneandinthecytosolofnkcells
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