nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
Adaptive laboratory evolution and genetic engineering improved terephthalate utilization in Pseudomonas putida KT2440
|
Werner, Allison Z. |
|
|
88 |
C |
p. 196-205 |
artikel |
2 |
Biosynthesis of 10-Hydroxy-2-Decenoic Acid in Escherichia coli
|
He, Dan |
|
|
88 |
C |
p. 240-249 |
artikel |
3 |
CIFR (Clone–Integrate–Flip-out–Repeat): A toolset for iterative genome and pathway engineering of Gram-negative bacteria
|
Federici, Filippo |
|
|
88 |
C |
p. 180-195 |
artikel |
4 |
Construction of a synthetic metabolic pathway for biosynthesis of threonine from ethylene glycol
|
Frazão, Cláudio J.R. |
|
|
88 |
C |
p. 50-62 |
artikel |
5 |
Cross-feeding of amino acid pathway intermediates is common in co-cultures of auxotrophic Escherichia coli
|
Hong, Yu-Jun |
|
|
88 |
C |
p. 172-179 |
artikel |
6 |
Deciphering molecular drivers of lactate metabolic shift in mammalian cell cultures
|
Torres, Mauro |
|
|
88 |
C |
p. 25-39 |
artikel |
7 |
De novo biosynthesis of mogroside V by multiplexed engineered yeasts
|
Qu, Guanyi |
|
|
88 |
C |
p. 160-171 |
artikel |
8 |
De novo 2′-fucosyllactose biosynthesis using glucose as the sole carbon source by multiple engineered Bacillus subtilis
|
Zhang, Quanwei |
|
|
88 |
C |
p. 85-93 |
artikel |
9 |
Designing a microbial factory suited for plant chloroplast-derived enzymes to efficiently and green synthesize natural products: Capsanthin and capsorubin as examples
|
Chen, Huibin |
|
|
88 |
C |
p. 215-227 |
artikel |
10 |
Developing a Bacillus licheniformis platform for de novo production of γ-aminobutyric acid and other glutamate-derived chemicals
|
Wang, Shiyi |
|
|
88 |
C |
p. 124-136 |
artikel |
11 |
Editorial Board
|
|
|
|
88 |
C |
p. ii |
artikel |
12 |
Engineering metabolic flux for the microbial synthesis of aromatic compounds
|
Li, Zhendong |
|
|
88 |
C |
p. 94-112 |
artikel |
13 |
Engineering of insect juvenile hormone III biosynthesis in the plant Nicotiana benthamiana
|
Stathaki, Angeliki |
|
|
88 |
C |
p. 77-84 |
artikel |
14 |
Evolution-assisted engineering of E. coli enables growth on formic acid at ambient CO2 via the Serine Threonine Cycle
|
Wenk, Sebastian |
|
|
88 |
C |
p. 14-24 |
artikel |
15 |
Exploring and increased acetate biosynthesis in Synechocystis PCC 6803 through insertion of a heterologous phosphoketolase and overexpressing phosphotransacetylase
|
Roussou, Stamatina |
|
|
88 |
C |
p. 250-260 |
artikel |
16 |
Introduction of acetyl-phosphate bypass and increased culture temperatures enhanced growth-coupled poly-hydroxybutyrate production in the marine cyanobacterium Synechococcus sp. PCC7002
|
Inabe, Kosuke |
|
|
88 |
C |
p. 228-239 |
artikel |
17 |
Metabolic engineering improves transduction efficiency and downstream vector isolation by altering the lipid composition of extracellular vesicle-enclosed AAV
|
Espinoza, Paula |
|
|
88 |
C |
p. 40-49 |
artikel |
18 |
Model-assisted CRISPRi/a library screening reveals central carbon metabolic targets for enhanced recombinant protein production in yeast
|
Chen, Xin |
|
|
88 |
C |
p. 1-13 |
artikel |
19 |
Nucleotide distribution analysis of 5′UTRs in genome-scale directs their redesign and expression regulation in yeast
|
Yao, Chaoying |
|
|
88 |
C |
p. 113-123 |
artikel |
20 |
Optimized production of concanamycins using a rational metabolic engineering strategy
|
Pereira, Filipa |
|
|
88 |
C |
p. 63-76 |
artikel |
21 |
Prenol production in a microbial host via the “Repass” Pathways
|
Carruthers, David N. |
|
|
88 |
C |
p. 261-274 |
artikel |
22 |
Protein engineering of an oxidative cleavage-free pathway for crocetin-dialdehyde production in Escherichia coli
|
Lee, Jun Ho |
|
|
88 |
C |
p. 137-147 |
artikel |
23 |
Synthetic translational coupling system for accurate and predictable polycistronic gene expression control in bacteria
|
Han, Yong Hee |
|
|
88 |
C |
p. 148-159 |
artikel |
24 |
Unleashing the innate ability of Escherichia coli to produce D-Allose
|
Luu, Bryant |
|
|
88 |
C |
p. 206-214 |
artikel |