Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Solange Moréra

6PUBLICATIONS
25CO-AUTHORS
Biologically active moleculesCell metabolismCharacterisation of biological macromoleculesMining engineeringPyrometallurgy
Featured researcher

Get your video featured.

JoVEPublish with JoVE
Featured researcher

Get your video featured.

JoVEPublish with JoVE
Journal

Publications (6)

Sort by Publication Date:
|May 22, 2024
Cytokinin oxidase/dehydrogenase inhibitors: progress towards agricultural practice.

Jaroslav Nisler, Pavel Klimeš, Radka Končitíková

|Dec 04, 2023
Plant nucleoside N-ribohydrolases: riboside binding and role in nitrogen storage mobilization.

Eva Ľuptáková, Armelle Vigouroux, Radka Končitíková

|Feb 14, 2023
Biochemical and structural basis of polyamine, lysine and ornithine acetylation catalyzed by spermine/spermidine N-acetyl transferase in moss and maize.

Jakub Bělíček, Eva Ľuptáková, David Kopečný

|May 09, 2022
New insights into the mechanism of iron transport through the bacterial Ftr system present in pathogens.

Anne Soisig Steunou, Armelle Vigouroux, Magali Aumont-Nicaise

|Jul 19, 2019
A unique ferrous iron binding mode is associated with large conformational changes for the transport protein FpvC of Pseudomonas aeruginosa.

Armelle Vigouroux, Magali Aumont-Nicaise, Alain Boussac

|Mar 28, 2019
Kinetic and structural analysis of human ALDH9A1.

Radka Končitíková, Armelle Vigouroux, Martina Kopečná

Pageof 1

Frequent Collaborators

4 joint publications

David Kopečný

3 joint publications

Armelle Vigouroux

3 joint publications

Nuria De Diego

2 joint publications

David Zalabák

2 joint publications

Martina Kopečná

2 joint publications

Radka Končitíková

2 joint publications

Jaroslav Nisler

2 joint publications

Sanja Ćavar Zeljković

2 joint publications

Pierre Briozzo

2 joint publications

David Jaroslav Kopečný

Frequent Collaborators

4 joint publications

David Kopečný

3 joint publications

Armelle Vigouroux

3 joint publications

Nuria De Diego

2 joint publications

David Zalabák

Top Related Videos

Measuring Rates of Herbicide Metabolism in Dicot Weeds with an Excised Leaf Assay
10:49

Measuring Rates of Herbicide Metabolism in Dicot Weeds with an Excised Leaf Assay

Published on : Sep 07, 2015

12.0K
NMR-Based Activity Assays for Determining Compound Inhibition, IC<sub>50</sub> Values, Artifactual Activity, and Whole-Cell Activity of Nucleoside Ribohydrolases
10:24

NMR-Based Activity Assays for Determining Compound Inhibition, IC<sub>50</sub> Values, Artifactual Activity, and Whole-Cell Activity of Nucleoside Ribohydrolases

Published on : Jun 30, 2019

10.1K
A Facile Protocol to Generate Site-Specifically Acetylated Proteins in <em>Escherichia Coli</em>
11:08

A Facile Protocol to Generate Site-Specifically Acetylated Proteins in <em>Escherichia Coli</em>

Published on : Dec 09, 2017

7.1K
See more related videos

Top Related Videos

Measuring Rates of Herbicide Metabolism in Dicot Weeds with an Excised Leaf Assay
10:49

Measuring Rates of Herbicide Metabolism in Dicot Weeds with an Excised Leaf Assay

Published on : Sep 07, 2015

12.0K
NMR-Based Activity Assays for Determining Compound Inhibition, IC<sub>50</sub> Values, Artifactual Activity, and Whole-Cell Activity of Nucleoside Ribohydrolases
10:24

NMR-Based Activity Assays for Determining Compound Inhibition, IC<sub>50</sub> Values, Artifactual Activity, and Whole-Cell Activity of Nucleoside Ribohydrolases

Published on : Jun 30, 2019

10.1K
A Facile Protocol to Generate Site-Specifically Acetylated Proteins in <em>Escherichia Coli</em>
11:08

A Facile Protocol to Generate Site-Specifically Acetylated Proteins in <em>Escherichia Coli</em>

Published on : Dec 09, 2017

7.1K
See more related videos