Activation of the GFP-SOS response by SOS-R4 strains over-expressing

Par un écrivain mystérieux
Last updated 09 juillet 2024
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
ASBMR 26th Annual Meeting SA001–SA589 - 2004 - Journal of Bone and Mineral Research - Wiley Online Library
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
Novel Cell Therapies and Manipulations: Ready for Prime-Time? (Section 17) - Hematopoietic Cell Transplants
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
Diversity and Host Range of Shiga Toxin-Encoding Phage
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
SOS response to a wide range of inducing signal. (A and B) SOS dynamics
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
Horticulturae, Free Full-Text
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
Directed evolution of the B. subtilis nitroreductase YfkO improves activation of the PET-capable probe SN33623 and CB1954 prodrug
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
Visible-Light-Mediated Modification and Manipulation of Biomacromolecules
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
Frontiers Regulatory Mechanisms Controlling Maturation of Serotonin Neuron Identity and Function
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
Targeting steroid hormone receptors for anti‐cancer therapy—A review on small molecules and nanotherapeutic approaches - Mahadik - 2022 - WIREs Nanomedicine and Nanobiotechnology - Wiley Online Library
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
DNA Methylation
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
The environmentally-regulated interplay between local three-dimensional chromatin organisation and transcription of proVWX in E. coli
Activation of the GFP-SOS response by SOS-R4 strains over-expressing
A retrotransposon in an HKT1 family sodium transporter causes variation of leaf Na+ exclusion and salt tolerance in maize - Zhang - 2018 - New Phytologist - Wiley Online Library

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