about
Identification of cyanobacterial non-coding RNAs by comparative genome analysisA motif-based search in bacterial genomes identifies the ortholog of the small RNA Yfr1 in all lineages of cyanobacteriaGenome sequence of the cyanobacterium Prochlorococcus marinus SS120, a nearly minimal oxyphototrophic genomeAn internal antisense RNA regulates expression of the photosynthesis gene isiASmall RNAs establish delays and temporal thresholds in gene expressionFunctioning and robustness of a bacterial circadian clockThe diversity of cyanobacterial metabolism: genome analysis of multiple phototrophic microorganismsMulti-target regulation by small RNAs synchronizes gene expression thresholds and may enhance ultrasensitive behavior.Revealing a two-loop transcriptional feedback mechanism in the cyanobacterial circadian clock.How cyanobacteria pose new problems to old methods: challenges in microarray time series analysis.Genome-wide expression dynamics of a marine virus and host reveal features of co-evolution.Insight into cyanobacterial circadian timing from structural details of the KaiB-KaiC interaction.Diversity of KaiC-based timing systems in marine Cyanobacteria.Bacterial computing with engineered populations.Minimal tool set for a prokaryotic circadian clock.Structures of the cyanobacterial circadian oscillator frozen in a fully assembled state.Multiple checkpoints for the expression of the chloroplast-encoded splicing factor MatK.Experimental and computational analysis of transcriptional start sites in the cyanobacterium Prochlorococcus MED4.A minimal circadian clock model.A sequestration feedback determines dynamics and temperature entrainment of the KaiABC circadian clockBiochemical evidence for a timing mechanism in prochlorococcus.Daily rhythms in the cyanobacterium synechococcus elongatus probed by high-resolution mass spectrometry-based proteomics reveals a small defined set of cyclic proteins.Daily expression pattern of protein-encoding genes and small noncoding RNAs in synechocystis sp. strain PCC 6803.Biochemical analysis of three putative KaiC clock proteins from Synechocystis sp. PCC 6803 suggests their functional divergence.Regulatory elements of marine cyanobacteria.6S RNA - an old issue became blue-green.Two distinct types of 6S RNA in Prochlorococcus.Correction: Multi-Target Regulation by Small RNAs Synchronizes Gene Expression Thresholds and May Enhance Ultrasensitive BehaviorComputational modelling unravels the precise clockwork of cyanobacteriaComparative Dose-Response Analysis of Inducible Promoters in CyanobacteriaSynechocystis KaiC3 Displays Temperature- and KaiB-Dependent ATPase Activity and Is Important for Growth in Darkness
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description
hulumtuese
@sq
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Ilka M Axmann
@ast
Ilka M Axmann
@en
Ilka M Axmann
@es
Ilka M Axmann
@nl
Ilka M Axmann
@sl
type
label
Ilka M Axmann
@ast
Ilka M Axmann
@en
Ilka M Axmann
@es
Ilka M Axmann
@nl
Ilka M Axmann
@sl
prefLabel
Ilka M Axmann
@ast
Ilka M Axmann
@en
Ilka M Axmann
@es
Ilka M Axmann
@nl
Ilka M Axmann
@sl
P106
P21
P31
P496
0000-0002-0856-8667