Liposome reconstitution of a minimal protein-mediated membrane fusion machine.
about
Viral and developmental cell fusion mechanisms: conservation and divergenceA compact, multifunctional fusion module directs cholesterol-dependent homomultimerization and syncytiogenic efficiency of reovirus p10 FAST proteinsA role for a complex between activated G protein-coupled receptors in yeast cellular matingA Virus-Encoded Cell–Cell Fusion Machine Dependent on Surrogate AdhesinsPhysico-chemical characteristics of lipoplexes influence cell uptake mechanisms and transfection efficacyReovirus FAST Proteins Drive Pore Formation and Syncytiogenesis Using a Novel Helix-Loop-Helix Fusion-Inducing Lipid Packing SensorVirus membrane-fusion proteins: more than one way to make a hairpinEnhanced fusion pore expansion mediated by the trans-acting Endodomain of the reovirus FAST proteins.Membrane fusion triggers rapid degradation of two gamete-specific, fusion-essential proteins in a membrane block to polygamy in Chlamydomonas.Features of a spatially constrained cystine loop in the p10 FAST protein ectodomain define a new class of viral fusion peptides.Reovirus FAST protein transmembrane domains function in a modular, primary sequence-independent manner to mediate cell-cell membrane fusion.Polybasic trafficking signal mediates golgi export, ER retention or ER export and retrieval based on membrane-proximityDelivery of intracellular-acting biologics in pro-apoptotic therapies.A novel tribasic Golgi export signal directs cargo protein interaction with activated Rab11 and AP-1-dependent Golgi-plasma membrane trafficking.A lipid-protein hybrid model for tight junction.Membrane lysis during biological membrane fusion: collateral damage by misregulated fusion machines.Golgi complex-plasma membrane trafficking directed by an autonomous, tribasic Golgi export signalMembrane perturbation elicits an IRF3-dependent, interferon-independent antiviral response.Efficient reovirus- and measles virus-mediated pore expansion during syncytium formation is dependent on annexin A1 and intracellular calcium.Role of temperature-independent lipoplex-cell membrane interactions in the efficiency boost of multicomponent lipoplexes.Helix-destabilizing, beta-branched, and polar residues in the baboon reovirus p15 transmembrane domain influence the modularity of FAST proteins.Direct simulation of protein-mediated vesicle fusion: lung surfactant protein BMultifaceted sequence-dependent and -independent roles for reovirus FAST protein cytoplasmic tails in fusion pore formation and syncytiogenesis.The p14 fusion-associated small transmembrane (FAST) protein effects membrane fusion from a subset of membrane microdomains.
P2860
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P2860
Liposome reconstitution of a minimal protein-mediated membrane fusion machine.
description
2005 nî lūn-bûn
@nan
2005 թուականի Օգոստոսին հրատարակուած գիտական յօդուած
@hyw
2005 թվականի օգոստոսին հրատարակված գիտական հոդված
@hy
2005年の論文
@ja
2005年論文
@yue
2005年論文
@zh-hant
2005年論文
@zh-hk
2005年論文
@zh-mo
2005年論文
@zh-tw
2005年论文
@wuu
name
Liposome reconstitution of a minimal protein-mediated membrane fusion machine.
@ast
Liposome reconstitution of a minimal protein-mediated membrane fusion machine.
@en
type
label
Liposome reconstitution of a minimal protein-mediated membrane fusion machine.
@ast
Liposome reconstitution of a minimal protein-mediated membrane fusion machine.
@en
prefLabel
Liposome reconstitution of a minimal protein-mediated membrane fusion machine.
@ast
Liposome reconstitution of a minimal protein-mediated membrane fusion machine.
@en
P2093
P2860
P356
P1433
P1476
Liposome reconstitution of a minimal protein-mediated membrane fusion machine.
@en
P2093
Ahmed Touhami
David Hoskin
Jamie Mader
Jayme Salsman
Jennifer Corcoran
Manfred H Jericho
Roberto de Antueno
Roy Duncan
P2860
P304
P356
10.1038/SJ.EMBOJ.7600767
P407
P577
2005-08-04T00:00:00Z