Single-molecule in vivo imaging of bacterial respiratory complexes indicates delocalized oxidative phosphorylation.
about
Distribution and dynamics of electron transport complexes in cyanobacterial thylakoid membranesFrom Animaculum to single molecules: 300 years of the light microscopeShedding light on biology of bacterial cellsImaging and quantification of trans-membrane protein diffusion in living bacteria.Dynamic subcellular localization of a respiratory complex controls bacterial respiration.Single-Molecule Observation of DNA Replication Repair Pathways in E. coli.A novel method to accurately locate and count large numbers of steps by photobleachingThe membrane: transertion as an organizing principle in membrane heterogeneity.Designing a Single-Molecule Biophysics Tool for Characterising DNA Damage for Techniques that Kill Infectious Pathogens Through DNA Damage Effects.New Advances in Chromosome Architecture.Optical and force nanoscopy in microbiology.Single-molecule fluorescence microscopy review: shedding new light on old problems.Single-Molecule Narrow-Field Microscopy of Protein-DNA Binding Dynamics in Glucose Signal Transduction of Live Yeast Cells.Quantitative Analysis of Intracellular Fluorescent Foci in Live Bacteria.Transcription factor clusters regulate genes in eukaryotic cells.Independent mobility of proteins and lipids in the plasma membrane of Escherichia coli.Dissecting the Native Architecture and Dynamics of Cyanobacterial Photosynthetic Machinery.Repurposing a photosynthetic antenna protein as a super-resolution microscopy label.Molecular coordination of Staphylococcus aureus cell division.Millisecond single-molecule localization microscopy combined with convolution analysis and automated image segmentation to determine protein concentrations in complexly structured, functional cells, one cell at a time.Analytical tools for single-molecule fluorescence imaging in cellulo.Using Fluorescence Recovery After Photobleaching (FRAP) to Study Dynamics of the Structural Maintenance of Chromosome (SMC) Complex In Vivo.High-Speed Single-Molecule Tracking of CXCL13 in the B-Follicle.Transcription factors in eukaryotic cells can functionally regulate gene expression by acting in oligomeric assemblies formed from an intrinsically disordered protein phase transition enabled by molecular crowding
P2860
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P2860
Single-molecule in vivo imaging of bacterial respiratory complexes indicates delocalized oxidative phosphorylation.
description
2014 nî lūn-bûn
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2014年の論文
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2014年学术文章
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2014年学术文章
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2014年学术文章
@zh-cn
2014年学术文章
@zh-hans
2014年学术文章
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name
Single-molecule in vivo imagin ...... zed oxidative phosphorylation.
@en
Single-molecule in vivo imagin ...... zed oxidative phosphorylation.
@nl
type
label
Single-molecule in vivo imagin ...... zed oxidative phosphorylation.
@en
Single-molecule in vivo imagin ...... zed oxidative phosphorylation.
@nl
prefLabel
Single-molecule in vivo imagin ...... zed oxidative phosphorylation.
@en
Single-molecule in vivo imagin ...... zed oxidative phosphorylation.
@nl
P2093
P50
P1476
Single-molecule in vivo imagin ...... zed oxidative phosphorylation.
@en
P2093
Alex Robson
Christopher D Bray
Conrad W Mullineaux
Heiko Erhardt
Isabel Llorente-Garcia
Jae Yen Shin
Jan Liphardt
Oliver L Harriman
Sang-Hyuk Lee
Sarah Matthews
P304
P356
10.1016/J.BBABIO.2014.01.020
P577
2014-02-07T00:00:00Z