In vivo mutational analysis of YtvA from Bacillus subtilis: mechanism of light activation of the general stress response.
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Directed evolution of bright mutants of an oxygen-independent flavin-binding fluorescent protein from Pseudomonas putidaSTAS domain structure and functionFrom Plant Infectivity to Growth Patterns: The Role of Blue-Light Sensing in the Prokaryotic WorldSolution Structure of the Guanine Nucleotide-binding STAS Domain of SLC26-related SulP Protein Rv1739c from Mycobacterium tuberculosisLight-Induced Subunit Dissociation by a Light–Oxygen–Voltage Domain Photoreceptor from Rhodobacter sphaeroidesThe Role of Stress and Stress Adaptations in Determining the Fate of the Bacterial Pathogen Listeria monocytogenes in the Food ChainFlavin redox switching of protein functionsGenetic evidence for a phosphorylation-independent signal transduction mechanism within the Bacillus subtilis stressosomeBlue and red light modulates SigB-dependent gene transcription, swimming motility and invasiveness in Listeria monocytogenesBlue news update: BODIPY-GTP binds to the blue-light receptor YtvA while GTP does not.Old chromophores, new photoactivation paradigms, trendy applications: flavins in blue light-sensing photoreceptors.Characterization of flavin-based fluorescent proteins: an emerging class of fluorescent reportersSubstitutions in the presumed sensing domain of the Bacillus subtilis stressosome affect its basal output but not response to environmental signals.LucY: A Versatile New Fluorescent Reporter ProteinLOV-based optogenetic devices: light-driven modules to impart photoregulated control of cellular signaling.Structure and function of a short LOV protein from the marine phototrophic bacterium Dinoroseobacter shibae.Blue-Light Inhibition of Listeria monocytogenes Growth Is Mediated by Reactive Oxygen Species and Is Influenced by σB and the Blue-Light Sensor Lmo0799.Two surfaces of a conserved interdomain linker differentially affect output from the RST sensing module of the Bacillus subtilis stressosome.Tripping the light fantastic: blue-light photoreceptors as examples of environmentally modulated protein-protein interactions.Lights on and action! Controlling microbial gene expression by light.Function, structure and mechanism of bacterial photosensory LOV proteins.The Evolution and Functional Role of Flavin-based Prokaryotic Photoreceptors.Solving Blue Light Riddles: New Lessons from Flavin-binding LOV Photoreceptors.Cycles of light and dark co-ordinate reversible colony differentiation in Listeria monocytogenesLight-induced structural changes in a short light, oxygen, voltage (LOV) protein revealed by molecular dynamics simulations-implications for the understanding of LOV photoactivationDifferentiation of function among the RsbR paralogs in the general stress response of Bacillus subtilis with regard to light perception.Red light activates the sigmaB-mediated general stress response of Bacillus subtilis via the energy branch of the upstream signaling cascade.Interdomain signalling in the blue-light sensing and GTP-binding protein YtvA: a mutagenesis study uncovering the importance of specific protein sites.Blue light-induced conformational changes in a light-regulated transcription factor, aureochrome-1.A light-regulated bZIP module, photozipper, induces the binding of fused proteins to the target DNA sequence in a blue light-dependent manner.Modeling the functioning of YtvA in the general stress response in Bacillus subtilis.On the binding of BODIPY-GTP by the photosensory protein YtvA from the common soil bacterium Bacillus subtilis.Chromophore exchange in the blue light-sensitive photoreceptor YtvA from Bacillus subtilis.On the midpoint potential of the FAD chromophore in a BLUF-domain containing photoreceptor protein.
P2860
Q21202060-DCB78A6D-B4E2-422E-BCC8-EF6DF8B73167Q26824634-3C1B5637-B3B3-4616-9F5C-6E73E69443CCQ27007001-67882C2E-B01C-4269-9A1E-867BC3F4F15FQ27666405-7945814A-FC22-4359-892E-9A0FE4C314A7Q27675534-52C1C85B-F116-4796-8AF0-0BFE060B108BQ28074833-0EE58557-9666-4960-8F05-CE504FC127CBQ30395484-21CF5E7E-BFEB-44CA-BF6F-5D98C71FFFFDQ31153061-1E8EE38A-9399-4DD4-BBD8-1E612981C76DQ33802815-AD1F84A1-3695-4BA2-847F-BD1064B6996CQ34128447-353B7CAD-A020-4F39-812B-E46DF6BD8868Q34166937-266C6A25-6DFE-4D73-8A23-3CA6618D5075Q34760785-F94ADAE9-3E61-4AA3-8DFB-034A61F08DFCQ35096505-1D8BB81A-B76E-4EC5-A140-7038281A4C42Q35533094-B2BD5E75-4165-423C-A98A-94049C0C1FD7Q35596662-CF4F5CC2-2851-458C-B3B2-981D2D3A1E0AQ35607806-8DA82A19-E326-4E61-AFEF-74ABF8949A42Q36003876-AEFCAFAE-A6BD-415E-9CF0-83F8EB9299ADQ36156318-6F9F0552-9A9D-4FCB-ACD0-32079FCF79BAQ37818106-DA01D68D-BBF3-4AFA-8ABA-DD80E59F4473Q37845235-B03052B9-DE59-4F8F-96C2-EBC4B7740BDFQ37913028-E971149A-EE7B-4665-9F00-F56106B49E5CQ38542158-288C6C0B-1180-413A-A8FF-C365FB1FFD43Q39012870-2C92A934-FB94-4ECF-8C7E-C52722F50172Q39363999-9CBC31CF-9E4C-4230-A24E-2DF4D43E9C4DQ41548084-C121EDEA-13BB-42D9-8CB5-F5F9A1638CB5Q42583952-5D5FF829-1B9C-421E-A8A2-B7DBA297D937Q42929292-69B0F086-FE10-42FF-8EA1-B556AD5AC169Q43198094-EBF8B891-4E77-48CD-A73D-509693B8F071Q43962051-9A90913D-3835-4E9B-AE53-A890DAF31193Q50208775-A7B0144F-A978-4F39-A677-A45FD74F8D2BQ50231760-B8ABC7D9-B766-4766-90BD-5E2266485248Q50280244-14AEAC47-C1AB-4BED-A125-D4E2770F9C20Q50283747-78F9C9CD-AC88-40E9-901F-293F3A0C3264Q51630489-77768ABC-22D3-43F6-8E7F-1291985B3198
P2860
In vivo mutational analysis of YtvA from Bacillus subtilis: mechanism of light activation of the general stress response.
description
2009 nî lūn-bûn
@nan
2009年の論文
@ja
2009年論文
@yue
2009年論文
@zh-hant
2009年論文
@zh-hk
2009年論文
@zh-mo
2009年論文
@zh-tw
2009年论文
@wuu
2009年论文
@zh
2009年论文
@zh-cn
name
In vivo mutational analysis of ...... f the general stress response.
@en
type
label
In vivo mutational analysis of ...... f the general stress response.
@en
prefLabel
In vivo mutational analysis of ...... f the general stress response.
@en
P2093
P2860
P356
P1476
In vivo mutational analysis of ...... f the general stress response.
@en
P2093
Jocelyne Vreede
Klaas Hellingwerf
Marcela Avila-Pérez
Onno Bende
Yifen Tang
P2860
P304
24958-24964
P356
10.1074/JBC.M109.033316
P407
P577
2009-07-06T00:00:00Z