about
Structure-based design of novel Chlamydomonas reinhardtii D1-D2 photosynthetic proteins for herbicide monitoringMutations of photosystem II D1 protein that empower efficient phenotypes of Chlamydomonas reinhardtii under extreme environment in spaceOptical biosensors for environmental monitoring based on computational and biotechnological tools for engineering the photosynthetic D1 protein of Chlamydomonas reinhardtii.Structure/function/dynamics of photosystem II plastoquinone binding sites.Directed evolution and in silico analysis of reaction centre proteins reveal molecular signatures of photosynthesis adaptation to radiation pressure.A powerful molecular engineering tool provided efficient Chlamydomonas mutants as bio-sensing elements for herbicides detection.Healthy and adverse effects of plant-derived functional metabolites: the need of revealing their content and bioactivity in a complex food matrix.Synthetic biology and biomimetic chemistry as converging technologies fostering a new generation of smart biosensors.The plastoquinol-plastoquinone exchange mechanism in photosystem II: insight from molecular dynamics simulations.Design and biophysical characterization of atrazine-sensing peptides mimicking the Chlamydomonas reinhardtii plastoquinone binding niche.BIOKIS: A Model Payload for Multidisciplinary Experiments in MicrogravityIntegrated plant biotechnologies applied to safer and healthier food production: The Nutra-Snack manufacturing chainThe NUTRA-SNACKS Project: Basic Research and Biotechnological Programs on Nutraceutics
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description
hulumtuese
@sq
researcher
@en
wetenschapper
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հետազոտող
@hy
name
Amina Antonacci
@ast
Amina Antonacci
@en
Amina Antonacci
@es
Amina Antonacci
@nl
Amina Antonacci
@sl
type
label
Amina Antonacci
@ast
Amina Antonacci
@en
Amina Antonacci
@es
Amina Antonacci
@nl
Amina Antonacci
@sl
prefLabel
Amina Antonacci
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Amina Antonacci
@en
Amina Antonacci
@es
Amina Antonacci
@nl
Amina Antonacci
@sl
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P1153
34869086000
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P31
P496
0000-0002-3245-3739