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Daniel R. Weilandt
Daniel R. Weilandt
Bestätigte E-Mail-Adresse bei princeton.edu
Titel
Zitiert von
Zitiert von
Jahr
Slow TCA flux and ATP production in primary solid tumours but not metastases
CR Bartman, DR Weilandt, Y Shen, WD Lee, Y Han, T TeSlaa, ...
Nature 614 (7947), 349-357, 2023
1032023
Single-molecule kinetic analysis of HP1-chromatin binding reveals a dynamic network of histone modification and DNA interactions
LC Bryan, DR Weilandt, AL Bachmann, S Kilic, CC Lechner, PD Odermatt, ...
Nucleic acids research 45 (18), 10504-10517, 2017
582017
Particle-based simulation reveals macromolecular crowding effects on the Michaelis-Menten mechanism
DR Weilandt, V Hatzimanikatis
Biophysical journal 117 (2), 355-368, 2019
292019
Reconstructing kinetic models for dynamical studies of metabolism using generative adversarial networks
S Choudhury, M Moret, P Salvy, D Weilandt, V Hatzimanikatis, L Miskovic
Nature Machine Intelligence 4 (8), 710-719, 2022
242022
Symbolic Kinetic Models in Python (SKiMpy): Intuitive modeling of large-scale biological kinetic models
DR Weilandt, P Salvy, M Masid, G Fengos, R Denhardt-Erikson, ...
Bioinformatics 39 (1), btac787, 2023
72023
Proteome capacity constraints favor respiratory ATP generation
Y Shen, HV Dinh, E Cruz, CM Call, H Baron, RP Ryseck, J Pratas, ...
bioRxiv, 2022.08. 10.503479, 2022
52022
Optimal enzyme utilization suggests that concentrations and thermodynamics determine binding mechanisms and enzyme saturations
A Sahin, DR Weilandt, V Hatzimanikatis
Nature Communications 14 (1), 2618, 2023
42023
Rational strain design with minimal phenotype perturbation
B Narayanan, D Weilandt, M Masid, L Miskovic, V Hatzimanikatis
Nature Communications 15 (1), 723, 2024
22024
Mitochondrial ATP generation is more proteome efficient than glycolysis
Y Shen, HV Dinh, ER Cruz, Z Chen, CR Bartman, T Xiao, CM Call, ...
Nature Chemical Biology, 1-10, 2024
12024
Thermodynamics of Metabolic Pathways
DR Weilandt, M Masid, V Hatzimanikatis
Metabolic Engineering, 2021
12021
Modeling biochemical reaction networks in complex intracellular environments
DR Weilandt
EPFL, 2020
12020
An Integrated Approach to Maximize Process and Strain Efficiency in Biochemical Processes: the Case of Bioplastics Production and Muconic Acid.
S Xenios, D Weilandt, V Hatzimanikatis, L Miskovic, A Kokosis
2022 AIChE Annual Meeting, 2022
2022
Optimal enzyme utilization suggests concentrations and thermodynamics favor condition-specific saturations and binding mechanisms
A Sahin, DR Weilandt, V Hatzimanikatis
bioRxiv, 2022.04. 12.488028, 2022
2022
On the integration of process engineering with metabolomics for the production of muconic acid: the case for Saccharomyces Cerevisiae
S Xenios, D Weilandt, H Vasilis, L Miskovic, A Kokosis
Computer Aided Chemical Engineering 51, 541-546, 2022
2022
Investigating crowded metabolism: A molecular particle approach
DR Weilandt, V Hatzimanikatis
2017
Scaffolds Improve the Antitumor Activity of Chimeric Antigen Receptors
CR Bartman, DR Weilandt, Y Shen, WD Lee, Y Han, T TeSlaa
Supporting information for Single-molecule kinetic analysis of HP1-chromatin binding reveals a dynamic network of histone modification and DNA interactions
LC Bryan, DR Weilandt, AL Bachmann, S Kilic, CC Lechner, PD Odermatt, ...
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