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Michael A. Sørensen
Michael A. Sørensen
Associate professor, University of Copenhagen
Verified email at bio.ku.dk
Title
Cited by
Cited by
Year
Codon usage determines translation rate in Escherichia coli
MA Sørensen, CG Kurland, S Pedersen
Journal of molecular biology 207 (2), 365-377, 1989
7731989
Absolute in vivo translation rates of individual codons in Escherichia coli: the two glutamic acid codons GAA and GAG are translated with a threefold difference in rate
MA Sørensen, S Pedersen
Journal of molecular biology 222 (2), 265-280, 1991
3731991
Selective charging of tRNA isoacceptors induced by amino‐acid starvation
KA Dittmar, MA Sørensen, J Elf, M Ehrenberg, T Pan
EMBO reports 6 (2), 151-157, 2005
2702005
Synthesis of proteins in Escherichia coli is limited by the concentration of free ribosomes: expression from reporter genes does not always reflect functional mRNA levels
J Vind, MA Sørensen, MD Rasmussen, S Pedersen
Journal of molecular biology 231 (3), 678-688, 1993
2671993
Ribosomal protein S1 is required for translation of most, if not all, natural mRNAs in Escherichia coli in vivo
MA Sørensen, J Fricke, S Pedersen
Journal of molecular biology 280 (4), 561-569, 1998
2521998
Prophages and growth dynamics confound experimental results with antibiotic-tolerant persister cells
A Harms, C Fino, MA Sørensen, S Semsey, K Gerdes
MBio 8 (6), 10.1128/mbio. 01964-17, 2017
2162017
The modification of the wobble base of tRNAGlu modulates the translation rate of glutamic acid codons in vivo
MK Krüger, S Pedersen, TG Hagervall, MA Sørensen
Journal of molecular biology 284 (3), 621-631, 1998
1571998
Ribosome hibernation
T Prossliner, K Skovbo Winther, MA Sørensen, K Gerdes
Annual review of genetics 52 (1), 321-348, 2018
1462018
Correlation between mechanical strength of messenger RNA pseudoknots and ribosomal frameshifting
TM Hansen, SNS Reihani, LB Oddershede, MA Sørensen
Proceedings of the National Academy of Sciences 104 (14), 5830-5835, 2007
1462007
Charging levels of four tRNA species in Escherichia coli Rel+ and Rel− strains during amino acid starvation: a simple model for the effect of ppGpp on translational accuracy
MA Sørensen
Journal of molecular biology 307 (3), 785-798, 2001
982001
mRNA pseudoknot structures can act as ribosomal roadblocks
J Tholstrup, LB Oddershede, MA Sørensen
Nucleic acids research 40 (1), 303-313, 2012
882012
Decreasing transcription elongation rate in Escherichia Coli exposed to amino acid starvation
U Vogel, M Sørensen, S Pedersen, KF Jensen, M Kilstrup
Molecular microbiology 6 (15), 2191-2200, 1992
871992
Transfer RNA is highly unstable during early amino acid starvation in Escherichia coli
SL Svenningsen, M Kongstad, TS Stenum, AJ Munoz-Gomez, ...
Nucleic acids research 45 (2), 793-804, 2017
812017
Aminoacylation of hypomodified tRNAGlu in vivo
MK Krüger, MA Sørensen
Journal of molecular biology 284 (3), 609-620, 1998
801998
High concentrations of ppGpp decrease the RNA chain growth rate: implications for protein synthesis and translational fidelity during amino acid starvation in Escherichia coli
MA Sørensen, KF Jensen, S Pedersen
Journal of molecular biology 236 (2), 441-454, 1994
801994
Cysteine, even in low concentrations, induces transient amino acid starvation in Escherichia coli
MA Sørensen, S Pedersen
Journal of bacteriology 173 (16), 5244-5246, 1991
721991
Pseudouridylation of helix 69 of 23S rRNA is necessary for an effective translation termination
M Ejby, MA Sørensen, S Pedersen
Proceedings of the National Academy of Sciences 104 (49), 19410-19415, 2007
652007
Over expression of a tRNALeu isoacceptor changes charging pattern of leucine tRNAs and reveals new codon reading
MA Sørensen, J Elf, E Bouakaz, T Tenson, S Sanyal, GR Björk, ...
Journal of molecular biology 354 (1), 16-24, 2005
652005
Hibernation factors directly block ribonucleases from entering the ribosome in response to starvation
T Prossliner, K Gerdes, MA Sørensen, KS Winther
Nucleic Acids Research 49 (4), 2226-2239, 2021
402021
Short‐term kinetics of rRNA degradation in Escherichia coli upon starvation for carbon, amino acid or phosphate
M Fessler, B Gummesson, G Charbon, SL Svenningsen, MA Sørensen
Molecular Microbiology 113 (5), 951-963, 2020
402020
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