Structures of Lysenin Reveal a Shared Evolutionary Origin for Pore-Forming Proteins And Its Mode of Sphingomyelin Recognition
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Listeriolysin O Membrane Damaging Activity Involves Arc Formation and Lineaction -- Implication for Listeria monocytogenes Escape from Phagocytic VacuoleCrystal structure of an invertebrate cytolysin pore reveals unique properties and mechanism of assemblyCryo-EM structure of lysenin pore elucidates membrane insertion by an aerolysin family protein.Clostridium perfringensepsilon toxin H149A mutant as a platform for receptor binding studiesMolecular assembly of the aerolysin pore reveals a swirling membrane-insertion mechanismStructural basis for receptor recognition and pore formation of a zebrafish aerolysin-like proteinDe novo phasing with X-ray laser reveals mosquito larvicide BinAB structureQuo vadis venomics? A roadmap to neglected venomous invertebratesPurinergic control of lysenin's transport and voltage-gating propertiesEffects of MACPF/CDC proteins on lipid membranes.A Polychaete's powerful punch: venom gland transcriptomics of Glycera reveals a complex cocktail of toxin homologsCharacterization of the Lipid-Binding Site of Equinatoxin II by NMR and Molecular Dynamics SimulationReal-time visualization of assembling of a sphingomyelin-specific toxin on planar lipid membranes.Earthworm-derived pore-forming toxin lysenin and screening of its inhibitorsPore-forming toxins from pathogenic amoebae.Molecular mechanism of pore formation by aerolysin-like proteins.Incomplete pneumolysin oligomers form membrane pores.Structural, physicochemical and dynamic features conserved within the aerolysin pore-forming toxin family.ZnO nanoparticles modulate the ionic transport and voltage regulation of lysenin nanochannels.Lysenin Toxin Membrane Insertion Is pH-Dependent but Independent of Neighboring Lysenins.Environmental pollutants, pathogens and immune system in earthworms.Cationic polymers inhibit the conductance of lysenin channels.Advances in structure determination by cryo-EM to unravel membrane-spanning pore formationInsights into the Voltage Regulation Mechanism of the Pore-Forming Toxin Lysenin
P2860
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P2860
Structures of Lysenin Reveal a Shared Evolutionary Origin for Pore-Forming Proteins And Its Mode of Sphingomyelin Recognition
description
2012 nî lūn-bûn
@nan
2012 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2012 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
2012年の論文
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2012年論文
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2012年論文
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2012年論文
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2012年論文
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2012年論文
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2012年论文
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name
Structures of Lysenin Reveal a ...... e of Sphingomyelin Recognition
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Structures of Lysenin Reveal a ...... e of Sphingomyelin Recognition
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Structures of Lysenin Reveal a ...... e of Sphingomyelin Recognition
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Structures of Lysenin Reveal a ...... e of Sphingomyelin Recognition
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Structures of Lysenin Reveal a ...... e of Sphingomyelin Recognition
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Structures of Lysenin Reveal a ...... e of Sphingomyelin Recognition
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Structures of Lysenin Reveal a ...... e of Sphingomyelin Recognition
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Structures of Lysenin Reveal a ...... e of Sphingomyelin Recognition
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Structures of Lysenin Reveal a ...... e of Sphingomyelin Recognition
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P2093
P2860
P50
P3181
P1433
P1476
Structures of lysenin reveal a ...... e of sphingomyelin recognition
@en
P2093
Andreas F-P Sonnen
Keith J Morris
Luigi De Colibus
Matthias Leippe
Patrizia Abrusci
Vesna Hodnik
P2860
P304
P3181
P356
10.1016/J.STR.2012.06.011
P577
2012-07-19T00:00:00Z