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Beilstein Journal of Organic Chemistry
|
March 16, 2019
Back to the future: Why we need enzymology to build a synthetic metabolism of the future
Tobias J Erb
Applied and Environmental Microbiology
|
October 18, 2011
Carboxylases in natural and synthetic microbial pathways
Tobias J Erb
Cold Spring Harbor Perspectives in Biology
|
October 17, 2023
Photosynthesis 2.0: Realizing New-to-Nature CO<sub>2</sub>-Fixation to Overcome the Limits of Natural Metabolism
Tobias J Erb
Emerging Topics in Life Sciences
|
February 1, 2021
Structural organization of biocatalytic systems: the next dimension of synthetic metabolism
Tobias J Erb
Current Opinion in Biotechnology
|
August 27, 2017
A short history of RubisCO: the rise and fall (?) of Nature's predominant CO<sub>2</sub> fixing enzyme
Tobias J Erb, Jan Zarzycki
Current Opinion in Chemical Biology
|
October 1, 2018
'Negative' and 'positive catalysis': complementary principles that shape the catalytic landscape of enzymes
Bastian Vögeli, Tobias J Erb
Current Opinion in Chemical Biology
|
July 12, 2016
Biochemical and synthetic biology approaches to improve photosynthetic CO<sub>2</sub>-fixation
Tobias J Erb, Jan Zarzycki
ACS Synthetic Biology
|
January 29, 2025
Cell-Free Systems to Mimic and Expand Metabolism
Blake J Rasor, Tobias J Erb
Plos One
|
October 20, 2010
Methanol assimilation in Methylobacterium extorquens AM1: demonstration of all enzymes and their regulation
Hana Smejkalová, Tobias J Erb, Georg Fuchs
Biochemistry
|
December 19, 2022
Structural Basis for a Cork-Up Mechanism of the Intra-Molecular Mesaconyl-CoA Transferase
Pascal Pfister, Jan Zarzycki, Tobias J Erb
Page
of 13
Search research articles
Search
Showing results (1-10 of 122) with videos related to
Sort By:
Page
of 13
Beilstein Journal of Organic Chemistry
|
March 16, 2019
Back to the future: Why we need enzymology to build a synthetic metabolism of the future
Tobias J Erb
Applied and Environmental Microbiology
|
October 18, 2011
Carboxylases in natural and synthetic microbial pathways
Tobias J Erb
Cold Spring Harbor Perspectives in Biology
|
October 17, 2023
Photosynthesis 2.0: Realizing New-to-Nature CO<sub>2</sub>-Fixation to Overcome the Limits of Natural Metabolism
Tobias J Erb
Emerging Topics in Life Sciences
|
February 1, 2021
Structural organization of biocatalytic systems: the next dimension of synthetic metabolism
Tobias J Erb
Current Opinion in Biotechnology
|
August 27, 2017
A short history of RubisCO: the rise and fall (?) of Nature's predominant CO<sub>2</sub> fixing enzyme
Tobias J Erb, Jan Zarzycki
Current Opinion in Chemical Biology
|
October 1, 2018
'Negative' and 'positive catalysis': complementary principles that shape the catalytic landscape of enzymes
Bastian Vögeli, Tobias J Erb
Current Opinion in Chemical Biology
|
July 12, 2016
Biochemical and synthetic biology approaches to improve photosynthetic CO<sub>2</sub>-fixation
Tobias J Erb, Jan Zarzycki
ACS Synthetic Biology
|
January 29, 2025
Cell-Free Systems to Mimic and Expand Metabolism
Blake J Rasor, Tobias J Erb
Plos One
|
October 20, 2010
Methanol assimilation in Methylobacterium extorquens AM1: demonstration of all enzymes and their regulation
Hana Smejkalová, Tobias J Erb, Georg Fuchs
Biochemistry
|
December 19, 2022
Structural Basis for a Cork-Up Mechanism of the Intra-Molecular Mesaconyl-CoA Transferase
Pascal Pfister, Jan Zarzycki, Tobias J Erb
Page
of 13