Dynamic Organization of SecA and SecY Secretion Complexes in the B. subtilis Membrane.

In prokaryotes, about one third of cellular proteins are translocated across the plasma membrane or inserted into it by concerted action of the cytoplasmic ATPase SecA and the universally conserved SecYEG heterotrimeric polypeptide-translocating pore. Secretion complexes have been reported to locali...

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Main Authors: Alex Dajkovic, Elizabeth Hinde, Calum MacKichan, Rut Carballido-Lopez
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4918944?pdf=render
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spelling doaj-6374ff129b06432686dcb6f4522ef3da2020-11-25T02:10:30ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01116e015789910.1371/journal.pone.0157899Dynamic Organization of SecA and SecY Secretion Complexes in the B. subtilis Membrane.Alex DajkovicElizabeth HindeCalum MacKichanRut Carballido-LopezIn prokaryotes, about one third of cellular proteins are translocated across the plasma membrane or inserted into it by concerted action of the cytoplasmic ATPase SecA and the universally conserved SecYEG heterotrimeric polypeptide-translocating pore. Secretion complexes have been reported to localize in specific subcellular sites in Bacillus subtilis. In this work, we used a combination of total internal reflection microscopy, scanning fluorescence correlation spectroscopy, and pair correlation function to study the localization and dynamics of SecA and SecY in growing Bacillus subtilis cells. Both SecA and SecY localized in transient and dynamic foci in the cytoplasmic membrane, which displayed no higher-level organization in helices. Foci of SecA and SecY were in constant flux with freely diffusing SecA and SecY molecules. Scanning FCS confirmed the existence of populations of cellular SecA and SecY molecules with a wide range of diffusion coefficients. Diffusion of SecY as an uncomplexed molecular species was short-lived and only local while SecY complexed with its protein partners traversed distances of over half a micrometer in the cell.http://europepmc.org/articles/PMC4918944?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Alex Dajkovic
Elizabeth Hinde
Calum MacKichan
Rut Carballido-Lopez
spellingShingle Alex Dajkovic
Elizabeth Hinde
Calum MacKichan
Rut Carballido-Lopez
Dynamic Organization of SecA and SecY Secretion Complexes in the B. subtilis Membrane.
PLoS ONE
author_facet Alex Dajkovic
Elizabeth Hinde
Calum MacKichan
Rut Carballido-Lopez
author_sort Alex Dajkovic
title Dynamic Organization of SecA and SecY Secretion Complexes in the B. subtilis Membrane.
title_short Dynamic Organization of SecA and SecY Secretion Complexes in the B. subtilis Membrane.
title_full Dynamic Organization of SecA and SecY Secretion Complexes in the B. subtilis Membrane.
title_fullStr Dynamic Organization of SecA and SecY Secretion Complexes in the B. subtilis Membrane.
title_full_unstemmed Dynamic Organization of SecA and SecY Secretion Complexes in the B. subtilis Membrane.
title_sort dynamic organization of seca and secy secretion complexes in the b. subtilis membrane.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description In prokaryotes, about one third of cellular proteins are translocated across the plasma membrane or inserted into it by concerted action of the cytoplasmic ATPase SecA and the universally conserved SecYEG heterotrimeric polypeptide-translocating pore. Secretion complexes have been reported to localize in specific subcellular sites in Bacillus subtilis. In this work, we used a combination of total internal reflection microscopy, scanning fluorescence correlation spectroscopy, and pair correlation function to study the localization and dynamics of SecA and SecY in growing Bacillus subtilis cells. Both SecA and SecY localized in transient and dynamic foci in the cytoplasmic membrane, which displayed no higher-level organization in helices. Foci of SecA and SecY were in constant flux with freely diffusing SecA and SecY molecules. Scanning FCS confirmed the existence of populations of cellular SecA and SecY molecules with a wide range of diffusion coefficients. Diffusion of SecY as an uncomplexed molecular species was short-lived and only local while SecY complexed with its protein partners traversed distances of over half a micrometer in the cell.
url http://europepmc.org/articles/PMC4918944?pdf=render
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