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Maintenance of vacuole integrity by bacterial pathogens
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title
Maintenance of vacuole integrity by bacterial pathogens
(English)
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main subject
vacuole
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inferred from title
author
Ralph R. Isberg
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2
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Ralph R. Isberg
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Elizabeth A. Creasey
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1
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language of work or name
English
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publication date
February 2014
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published in
Current Opinion in Microbiology
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volume
17
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PubMed
page(s)
46-52
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PubMed
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The Chlamydia protease CPAF regulates host and bacterial proteins to maintain pathogen vacuole integrity and promote virulence
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The virulence protein SopD2 regulates membrane dynamics of Salmonella-containing vacuoles
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Role for myosin II in regulating positioning of Salmonella-containing vacuoles and intracellular replication.
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The Salmonella effector protein PipB2 is a linker for kinesin-1
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Disruption of the phagosomal membrane and egress of Legionella pneumophila into the cytoplasm during the last stages of intracellular infection of macrophages and Acanthamoeba polyphaga
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Salmonella impairs RILP recruitment to Rab7 during maturation of invasion vacuoles
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28 September 2017
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28 September 2017
Microtubule motors control membrane dynamics of Salmonella-containing vacuoles
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Disruption of the Salmonella-containing vacuole leads to increased replication of Salmonella enterica serovar typhimurium in the cytosol of epithelial cells
1 reference
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PubMed Central
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28 September 2017
SopE acts as an Rab5-specific nucleotide exchange factor and recruits non-prenylated Rab5 on Salmonella-containing phagosomes to promote fusion with early endosomes
1 reference
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28 September 2017
Host cell-derived sphingolipids are required for the intracellular growth of Chlamydia trachomatis
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PubMed Central
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28 September 2017
Salmonella maintains the integrity of its intracellular vacuole through the action of SifA.
1 reference
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PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=4009691
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Lipid metabolism in Chlamydia trachomatis-infected cells: directed trafficking of Golgi-derived sphingolipids to the chlamydial inclusion
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Zinc metalloproteinase ProA directly activates Legionella pneumophila PlaC glycerophospholipid:cholesterol acyltransferase
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PubMed Central
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31 May 2018
SKIP, the host target of the Salmonella virulence factor SifA, promotes kinesin-1-dependent vacuolar membrane exchanges.
1 reference
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31 May 2018
SopB promotes phosphatidylinositol 3-phosphate formation on Salmonella vacuoles by recruiting Rab5 and Vps34
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31 May 2018
The rab7 GTPase controls the maturation of Salmonella typhimurium-containing vacuoles in HeLa cells
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Tracking the dynamic interplay between bacterial and host factors during pathogen-induced vacuole rupture in real time.
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PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=4009691
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28 November 2018
Esterification of cholesterol by a type III secretion effector during intracellular Salmonella infection
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28 November 2018
Functional dissection of SseF, a type III effector protein involved in positioning the salmonella-containing vacuole.
1 reference
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PubMed Central
reference URL
https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=4009691
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28 November 2018
Complementary activities of SseJ and SifA regulate dynamics of the Salmonella typhimurium vacuolar membrane
1 reference
stated in
PubMed Central
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https://eutils.ncbi.nlm.nih.gov/entrez/eutils/elink.fcgi?dbfrom=pmc&linkname=pmc_refs_pubmed&retmode=json&id=4009691
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28 November 2018
Remodelling of the actin cytoskeleton is essential for replication of intravacuolar Salmonella.
1 reference
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PubMed Central
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28 November 2018
Legionella phagosomes intercept vesicular traffic from endoplasmic reticulum exit sites
1 reference
stated in
PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/24581692
retrieved
12 December 2020
based on heuristic
inferred from PubMed ID database lookup
M. tuberculosis and M. leprae Translocate from the Phagolysosome to the Cytosol in Myeloid Cells
1 reference
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PubMed
reference URL
https://pubmed.ncbi.nlm.nih.gov/24581692
retrieved
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based on heuristic
inferred from PubMed ID database lookup
Identifiers
DOI
10.1016/J.MIB.2013.11.005
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
2472616
OpenCitations bibliographic resource ID
2472616
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
2472616
PMCID
4009691
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
2472616
PubMed ID
24581692
1 reference
stated in
Consolidated OpenCitations Corpus – April 2017
OpenCitations bibliographic resource ID
2472616
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