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In situ architecture, function, and evolution of a contractile injection system
by
Penz, Thomas
, Horn, Matthias
, Aistleitner, Karin
, Weiss, Gregor L.
, Medeiros, João M.
, Böck, Désirée
, Pilhofer, Martin
, Tsao, Han-Fei
in
Amoeba - microbiology
/ Arrays
/ Bacteria
/ Bacteriophages - chemistry
/ Bacteriophages - ultrastructure
/ Bacteroidetes - physiology
/ Cell interactions
/ Cellular structure
/ Contractility
/ Cryoelectron Microscopy
/ Cytoplasmic membranes
/ Electron Microscope Tomography
/ Electron microscopy
/ Injection
/ Injection systems
/ Ion beams
/ Localization
/ Membranes
/ Milling (machining)
/ Modules
/ Multigene Family
/ Phages
/ Phagosomes - chemistry
/ Phagosomes - ultrastructure
/ Phylogeny
/ Protein Conformation
/ Secretion
/ Sheaths
/ Structure-function relationships
/ Symbiosis
/ Type VI Secretion Systems - chemistry
/ Type VI Secretion Systems - classification
/ Type VI Secretion Systems - genetics
/ Type VI Secretion Systems - ultrastructure
2017
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In situ architecture, function, and evolution of a contractile injection system
by
Penz, Thomas
, Horn, Matthias
, Aistleitner, Karin
, Weiss, Gregor L.
, Medeiros, João M.
, Böck, Désirée
, Pilhofer, Martin
, Tsao, Han-Fei
in
Amoeba - microbiology
/ Arrays
/ Bacteria
/ Bacteriophages - chemistry
/ Bacteriophages - ultrastructure
/ Bacteroidetes - physiology
/ Cell interactions
/ Cellular structure
/ Contractility
/ Cryoelectron Microscopy
/ Cytoplasmic membranes
/ Electron Microscope Tomography
/ Electron microscopy
/ Injection
/ Injection systems
/ Ion beams
/ Localization
/ Membranes
/ Milling (machining)
/ Modules
/ Multigene Family
/ Phages
/ Phagosomes - chemistry
/ Phagosomes - ultrastructure
/ Phylogeny
/ Protein Conformation
/ Secretion
/ Sheaths
/ Structure-function relationships
/ Symbiosis
/ Type VI Secretion Systems - chemistry
/ Type VI Secretion Systems - classification
/ Type VI Secretion Systems - genetics
/ Type VI Secretion Systems - ultrastructure
2017
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Do you wish to request the book?
In situ architecture, function, and evolution of a contractile injection system
by
Penz, Thomas
, Horn, Matthias
, Aistleitner, Karin
, Weiss, Gregor L.
, Medeiros, João M.
, Böck, Désirée
, Pilhofer, Martin
, Tsao, Han-Fei
in
Amoeba - microbiology
/ Arrays
/ Bacteria
/ Bacteriophages - chemistry
/ Bacteriophages - ultrastructure
/ Bacteroidetes - physiology
/ Cell interactions
/ Cellular structure
/ Contractility
/ Cryoelectron Microscopy
/ Cytoplasmic membranes
/ Electron Microscope Tomography
/ Electron microscopy
/ Injection
/ Injection systems
/ Ion beams
/ Localization
/ Membranes
/ Milling (machining)
/ Modules
/ Multigene Family
/ Phages
/ Phagosomes - chemistry
/ Phagosomes - ultrastructure
/ Phylogeny
/ Protein Conformation
/ Secretion
/ Sheaths
/ Structure-function relationships
/ Symbiosis
/ Type VI Secretion Systems - chemistry
/ Type VI Secretion Systems - classification
/ Type VI Secretion Systems - genetics
/ Type VI Secretion Systems - ultrastructure
2017
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In situ architecture, function, and evolution of a contractile injection system
Journal Article
In situ architecture, function, and evolution of a contractile injection system
2017
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Overview
Contractile injection systems mediate bacterial cell-cell interactions by a bacteriophage tail–like structure. In contrast to extracellular systems, the type 6 secretion system (T6SS) is defined by intracellular localization and attachment to the cytoplasmic membrane. Here we used cryo-focused ion beam milling, electron cryotomography, and functional assays to study a T6SS in Amoebophilus asiaticus. The in situ architecture revealed three modules, including a contractile sheath-tube, a baseplate, and an anchor. All modules showed conformational changes upon firing. Lateral baseplate interactions coordinated T6SSs in hexagonal arrays. The system mediated interactions with host membranes and may participate in phagosome escape. Evolutionary sequence analyses predicted that T6SSs are more widespread than previously thought. Our insights form the basis for understanding T6SS key concepts and exploring T6SS diversity.
Publisher
American Association for the Advancement of Science,The American Association for the Advancement of Science
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