Characterization of spores of Bacillus subtilis that lack most coat layers
about
Architecture and assembly of the Bacillus subtilis spore coatPhysical basis for the adaptive flexibility of Bacillus spore coats.Bacterial spore detection and analysis using hyperpolarized (129)Xe chemical exchange saturation transfer (Hyper-CEST) NMRA versatile nano display platform from bacterial spore coat proteinsProtein synthesis during cellular quiescence is inhibited by phosphorylation of a translational elongation factor.Fighting Ebola with novel spore decontamination technologies for the military.The physical state of water in bacterial spores.Structural and genetic analysis of X-ray scattering by spores of Bacillus subtilis.Recent progress in Bacillus subtilis sporulation.Bacterial spore structures and their protective role in biocide resistance.Nanoscale structural and mechanical analysis of Bacillus anthracis spores inactivated with rapid dry heating.Maturation of released spores is necessary for acquisition of full spore heat resistance during Bacillus subtilis sporulation.Phenotypic Diversity as a Mechanism to Exit Cellular Dormancy.Topology and accessibility of germination proteins in the Bacillus subtilis spore inner membrane.High-precision fitting measurements of the kinetics of size changes during germination of individual Bacillus spores.Analysis of the dynamics of a Bacillus subtilis spore germination protein complex during spore germination and outgrowth.The effects of heat activation on Bacillus spore germination, with nutrients or under high pressure, with or without various germination proteins.Chemical sporulation and germination: cytoprotective nanocoating of individual mammalian cells with a degradable tannic acid-FeIII complex.Sporulation environment of emetic toxin-producing Bacillus cereus strains determines spore size, heat resistance and germination capacity.The interactions of spore-coat morphogenetic proteins studied by single-molecule recognition force spectroscopy.Enzyme-driven Bacillus spore coat degradation leading to spore killing.Analysis of killing of growing cells and dormant and germinated spores of Bacillus species by black silicon nanopillars.Resistance to and killing by the sporicidal microbicide peracetic acid.Germination proteins in the inner membrane of dormant Bacillus subtilis spores colocalize in a discrete cluster.A Cytoprotective and Degradable Metal-Polyphenol Nanoshell for Single-Cell Encapsulation
P2860
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P2860
Characterization of spores of Bacillus subtilis that lack most coat layers
description
2008 nî lūn-bûn
@nan
2008年の論文
@ja
2008年論文
@yue
2008年論文
@zh-hant
2008年論文
@zh-hk
2008年論文
@zh-mo
2008年論文
@zh-tw
2008年论文
@wuu
2008年论文
@zh
2008年论文
@zh-cn
name
Characterization of spores of Bacillus subtilis that lack most coat layers
@en
type
label
Characterization of spores of Bacillus subtilis that lack most coat layers
@en
prefLabel
Characterization of spores of Bacillus subtilis that lack most coat layers
@en
P2093
P2860
P356
P1476
Characterization of spores of Bacillus subtilis that lack most coat layers
@en
P2093
Alexander J Malkin
Ann E Cowan
Barbara Setlow
Marco Plomp
Paul G Wahome
Sonali Ghosh
P2860
P304
P356
10.1128/JB.00896-08
P407
P50
P577
2008-08-22T00:00:00Z