Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Anne Breüner"'
Autor:
Adrian S. Geissler, Line D. Poulsen, Nadezhda T. Doncheva, Christian Anthon, Stefan E. Seemann, Enrique González-Tortuero, Anne Breüner, Lars J. Jensen, Carsten Hjort, Jeppe Vinther, Jan Gorodkin
Publikováno v:
Frontiers in Microbiology, Vol 13 (2022)
The production of the alpha-amylase (AMY) enzyme in Bacillus subtilis at a high rate leads to the accumulation of unfolded AMY, which causes secretion stress. The over-expression of the PrsA chaperone aids enzyme folding and reduces stress. To identi
Externí odkaz:
https://doaj.org/article/a60d2c584eda4fc5adb17a7740bf7e63
Autor:
Adrian Sven Geissler, Annaleigh Ohrt Fehler, Line Dahl Poulsen, Enrique González-Tortuero, Thomas Beuchert Kallehauge, Ferhat Alkan, Christian Anthon, Stefan Ernst Seemann, Michael Dolberg Rasmussen, Anne Breüner, Carsten Hjort, Jeppe Vinther, Jan Gorodkin
Publikováno v:
Geissler, A S, Fehler, A O, Poulsen, L D, Gonzalez-Tortuero, E, Kallehauge, T B, Alkan, F, Anthon, C, Seemann, S E, Rasmussen, M D, Breuener, A, Hjort, C, Vinther, J & Gorodkin, J 2023, ' CRISPRi screen for enhancing heterologous alpha-amylase yield in Bacillus subtilis ', Journal of Industrial Microbiology and Biotechnology, vol. 50, no. 1, kuac028 . https://doi.org/10.1093/jimb/kuac028
Yield improvements in cell factories can potentially be obtained by fine-tuning the regulatory mechanisms for gene candidates. In pursuit of such candidates, we performed RNA-sequencing of two α-amylase producing Bacillus strains and predict hundred
Autor:
Enrique González-Tortuero, Christian Anthon, Jakob H. Havgaard, Adrian S. Geissler, Anne Breüner, Carsten Hjort, Jan Gorodkin, Stefan E. Seemann
Publikováno v:
González-Tortuero, E, Anthon, C, Havgaard, J H, Geissler, A S, Breüner, A, Hjort, C, Gorodkin, J & Seemann, S E 2022, ' The Bacillaceae-1 RNA motif comprises two distinct classes ', Gene, vol. 841, 146756 . https://doi.org/10.1016/j.gene.2022.146756
Non-coding RNAs are key regulatory players in bacteria. Many computationally predicted non-coding RNAs, however, lack functional associations. An example is the Bacillaceae-1 RNA motif, whose Rfam model consists of two hairpin loops. We find the moti
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4f5c926244e43d618f5d9a34cb8adf83
https://curis.ku.dk/ws/files/319163709/1_s2.0_S0378111922005753_main.pdf
https://curis.ku.dk/ws/files/319163709/1_s2.0_S0378111922005753_main.pdf
Autor:
Adrian Sven, Geissler, Christian, Anthon, Ferhat, Alkan, Enrique, González-Tortuero, Line Dahl, Poulsen, Thomas Beuchert, Kallehauge, Anne, Breüner, Stefan Ernst, Seemann, Jeppe, Vinther, Jan, Gorodkin
Publikováno v:
Microbial Genomics
A large part of our current understanding of gene regulation in Gram-positive bacteria is based on Bacillus subtilis , as it is one of the most well studied bacterial model systems. The rapid growth in data concerning its molecular and genomic biolog
Autor:
Jan Gorodkin, Christian Anthon, Enrique González-Tortuero, Ferhat Alkan, Adrian Sven Geissler, Thomas Beuchert Kallehauge, Jeppe Vinther, Line Dahl Poulsen, Stefan E. Seemann, Anne Breüner
Publikováno v:
Geissler, A S, Anthon, C, Alkan, F, González-Tortuero, E, Poulsen, L D, Kallehauge, T B, Breüner, A, Seemann, S E, Vinther, J & Gorodkin, J 2021, ' Bsgatlas : A unified bacillus subtilis genome and transcriptome annotation atlas with enhanced information access ', Microbial Genomics, vol. 7, no. 2, 000524 . https://doi.org/10.1099/mgen.0.000524
A large part of our current understanding of gene regulation in Gram-positive bacteria is based on Bacillus subtilis , as it is one of the most well studied bacterial model systems. The rapid growth in data concerning its molecular and genomic biolog
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::96ba393080c704963aae85cc45b6724f
https://curis.ku.dk/portal/da/publications/bsgatlas(b3ab8dd5-f20e-4158-a71b-617bf43751fc).html
https://curis.ku.dk/portal/da/publications/bsgatlas(b3ab8dd5-f20e-4158-a71b-617bf43751fc).html
Autor:
Karin Hammer, Dorte Frees, Pekka Varmanen, Jan Martinussen, Anne Breüner, Anna Monika Boguta, Mogens Kilstrup
Publikováno v:
Breuner, A, Frees, D, Varmanen, P, Boguta, A M, Hammer, K, Martinussen, J & Kilstrup, M 2016, ' Ribosomal dimerization factor YfiA is the major protein synthesized after abrupt glucose depletion in Lactococcus lactis ', Microbiology (United Kingdom), vol. 162, pp. 1829-1839 . https://doi.org/10.1099/mic.0.000362
We analysed the response of the model bacterium Lactococcus lactis to abrupt depletion of glucose after several generations of exponential growth. Glucose depletion resulted in a drastic drop in the energy charge accompanied by an extremely low GTP l
Autor:
Marcin Krzystanek, Jens Tonne Andersen, Thomas A. Poulsen, Ivan Mijakovic, Allan Kent Nielsen, Peter Bjarke Olsen, Anne Breüner, Michael Dolberg Rasmussen
Publikováno v:
Microbial Physiology. 18:162-173
In this study, we characterized the heat shock stimulon of the important industrial microorganism Bacillus licheniformis using DNA microarrays. While sharing a high degree of homology with the closely related model organism Bacillus subtilis, the hea
Publikováno v:
Microbiology. 147:2051-2063
The site-specific recombination system of temperate lactococcal bacteriophage TP901-1 is unusual in several respects. First, the integrase belongs to the family of extended resolvases rather than to the λ integrase family and second, in the presence
Publikováno v:
Journal of Bacteriology. 181:7291-7297
In this work, the phage-encoded proteins involved in site-specific excision of the prophage genome of the temperate lactococcal bacteriophage TP901-1 were identified. The phage integrase is required for the process, and a low but significant frequenc
Publikováno v:
Molecular Microbiology. 20:581-592
The parA partitioning system of plasmid R1 consists of three components: the cis-acting centromere-like parC locus, and two proteins, ParM and ParR. The parC locus contains two sets of five direct repeats (iterons) to which the ParR protein binds. Th