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See Figure 2 caption.
Creators: Dawie van Niekerk, Jacky Snoep
Submitter: Dawie van Niekerk
See Figure 2 caption.
Creators: Dawie van Niekerk, Jacky Snoep
Submitter: Dawie van Niekerk
See Figure 2 caption
Creators: Dawie van Niekerk, Jacky Snoep
Submitter: Dawie van Niekerk
See Figure 2 caption.
Creators: Dawie van Niekerk, Jacky Snoep
Submitter: Dawie van Niekerk
Creators: Trond Ellingsen, Øyvind Jakobsen, Per Bruheim, Håvard Sletta, Anders Øverby, Sven Even Borgos, Sunniva Hoel, Alexander Wentzel
Submitter: Jay Moore
Creators: David Rand, R Jansen, Maria Elena Merlo, Morris Swertz, Preben Krabben, Kay Nieselt, Wolfgang Wohlleben, Jens Reuther, David Hodgson, Anthony Palathingal, David Wild, Elizabeth Wellington, Gregory Challis, Nigel Burroughs, Walid Omara, William Gaze, Brent Kiernan, Roxane Legaie, Sunniva Hoel, Juan-Francisco Martin, Antonio Rodríguez-García, Trond Ellingsen, Øyvind Jakobsen, Per Bruheim, Håvard Sletta, Anders Øverby, Sven Even Borgos, Jay Moore, Alexander Wentzel, Maggie Smith, Louise Thomas, Eriko Takano, Lubbert Dijkhuizen, Rainer Breitling, M. Tauqeer Alam
Submitter: Jay Moore
Main page at NCBI for the salmon genome. Contains download links to annotation GFF, genome sequence FASTA, etc.
Creator: Jon Olav Vik
Submitter: Jon Olav Vik
RNAseq analysis of S. solfataricus grown on either L-fucose or D-glucose
Creators: Jacqueline Wolf, Theresa Kouril, Andreas Albersmeier, Jörn Kalinowski
Submitter: Jacqueline Wolf
Activity assays in cell free extracts of S. solfataricus grown on either L-fucose or D-glucose and activity assays with recombinant proteins
Creators: Jacqueline Wolf, Katharina Kruse, Bettina Siebers, Theresa Kouril
Submitter: Jacqueline Wolf
Comparative GC-MS based metabolomics of S. solfataricus growing on either L-fucose or D-glucose. CoA derivatives were analysed via HPLC-MS
Creators: Jacqueline Wolf, Dietmar Schomburg
Submitter: Jacqueline Wolf
Comparative proteomics of S. solfatricus grown on either L-fucose or D-glucose.
Creators: Jacqueline Wolf, Trong Khoa Pham, Phil Wright
Submitter: Jacqueline Wolf
Publications and patents from the last 6 years
Creator: Vitor Martins dos Santos
Submitter: Vitor Martins dos Santos
List of publications from 2006 till 2016. Note: I retired from the University of Amsterdam in 2010
Creator: Roel Van Driel
Submitter: Roel Van Driel
3rd ERASysAPP – EXCHANGE Day: Networking and Info Day for research projects of the first and second ERASysAPP calls
Creators: Olga Krebs, Katalin Zsuzsanna Nagy, Heide Marie Hess
Submitter: Olga Krebs
Creators: Ron Henkel, Dagmar Waltemath
Submitter: Ron Henkel
Creator: Jan-Willem Veening
Submitter: Jan-Willem Veening
Creator: Jan-Willem Veening
Submitter: Jan-Willem Veening
Creator: Jan-Willem Veening
Submitter: Jan-Willem Veening
just cell counts, the area of the grains is separate.
Creator: Antoine Buetti-Dinh
Submitter: Antoine Buetti-Dinh
after shankra, saving the images that could not be analysed earlier. here they are simply treated by imagej change in brightness/contrast. the same can also be done with imagemagic.
Creator: Antoine Buetti-Dinh
Submitter: Antoine Buetti-Dinh
Creator: Antoine Buetti-Dinh
Submitter: Antoine Buetti-Dinh
Strain MK423 was grown under the same conditions as used when growing cells for microscopy analysis; cells of OD600 = 0.4 were diluted 100-fold in C+Y medium with 0.1 mM ZnCl2 and incubated for 2.5 hours until OD600 = 0.15. Cells were then harvested by centrifugation for 5 min at 6500 x g at 4°C. Genomic DNA was isolated using the Wizard® Genomic DNA Purification Kit (Promega) as described previously (Slager et al. 2014 Cell). Fragmentation was performed using Covaris instrument, and libraries ...
Creator: Jan-Willem Veening
Submitter: Jan-Willem Veening
Strain MK422 was grown under the same conditions as used when growing cells for microscopy analysis; cells of OD600 = 0.4 were diluted 100-fold in C+Y medium with 0.1 mM ZnCl2 and incubated for 2.5 hours until OD600 = 0.15. Cells were then harvested by centrifugation for 5 min at 6500 x g at 4°C. Genomic DNA was isolated using the Wizard® Genomic DNA Purification Kit (Promega) as described previously (Slager et al. 2014 Cell). Fragmentation was performed using Covaris instrument, and libraries ...
Creator: Jan-Willem Veening
Submitter: Jan-Willem Veening
Strain MK350 was grown under the same conditions as used when growing cells for microscopy analysis; cells of OD600 = 0.4 were diluted 100-fold in C+Y medium with 0.1 mM ZnCl2 and incubated for 2.5 hours until OD600 = 0.15. Cells were then harvested by centrifugation for 5 min at 6500 x g at 4°C. Genomic DNA was isolated using the Wizard® Genomic DNA Purification Kit (Promega) as described previously (Slager et al. 2014 Cell). Fragmentation was performed using Covaris instrument, and libraries ...
Creator: Jan-Willem Veening
Submitter: Jan-Willem Veening
Supplementary File S2: Kinetic entries for human galactose metabolism. SBML for query: http://sabiork.h-its.org/sabioRestWebServices/searchKineticLaws/sbml?q=Pathway:%22galactose%20metabolism%22%20AND%20Organism:%22homo%20sapiens%22
Creator: Matthias König
Submitter: Matthias König
Kinetic entry 14792 SBML for query http://sabiork.h-its.org/sabioRestWebServices/kineticLaws/14792
Creator: Matthias König
Submitter: Matthias König
L. lactis was grown in rich THY medium, strongly concentrated and glucose-pulsed in a MES buffer. Intracellular metabolite concentration is followed in time.
Creator: Martijn Bekker
Submitter: Martijn Bekker
The solution of Flux Balance Analysis (FBA) represents metabolic flux distribution in ZucAt model under light growth conditions. In this solution, (i) the ratio photorespiration / photosynthesis has been fixed to 0.25; and (ii) cyclic electron flow through FQR (ferredoxin-plastoquinone reductase) has been set 0.1 from non-cyclic flow through FRN (ferredoxin-NADP oxidoreductase). Under this constraints, ATP formed by non-cyclic photophosphorylation is not sufficient to fulfill ATP/NADPH ratio for ...
Creator: Maksim Zakhartsev
Submitter: Maksim Zakhartsev
The solution of Flux Balance Analysis (FBA) represents metabolic flux distribution in the model under light growth conditions. In this solution, (i) the photorespiration was set to 0; and (ii) cyclic electron flow through FQR (ferredoxin-plastoquinone reductase) has been set of 0.1 of flow through FRN (ferredoxin-NADP oxidoreductase). Under this constraints, ATP is under-produced in plastid and therefore is additionally imported to cytoplasm. Flux through FQR represents cyclic electron flow through ...
Creator: Maksim Zakhartsev
Submitter: Maksim Zakhartsev
The solution of Flux Balance Analysis (FBA) represents metabolic flux distribution in ZucAt model under light growth conditions. In this solution, (i) the ratio photorespiration / photosynthesis has been fixed to 0.25; and (ii) cyclic electron flow through FQR (ferredoxin-plastoquinone reductase) has been set 0.5 from non-cyclic flow through FRN (ferredoxin-NADP oxidoreductase). Under this constraints, ATP is over-produced in plastid and a surplus is exported to cytoplasm. Flux through FQR ...
Creator: Maksim Zakhartsev
Submitter: Maksim Zakhartsev