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Daniel R. Weilandt
Daniel R. Weilandt
Verified email at princeton.edu
Title
Cited by
Cited by
Year
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
1002023
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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