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Roberto A. Steiner

University of Padua · IT
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Area of research
Cell Biology · Materials Chemistry
Research interest
Research interests include Enzyme Structure and Function, Metal-Catalyzed Oxygenation Mechanisms, Microtubule and mitosis dynamics, and Photosynthetic Processes and Mechanisms.
h-index
28
citations
13,149
works
103
NIH funding
primary concept
email

Recent publications

Microtubule architecture connects AMOT stability to YAP/TAZ mechanotransduction and Hippo signalling
Nature Cell Biology 2025cited by 10position: middledoi
The <i>CCP</i>4 suite: integrative software for macromolecular crystallography
Acta Crystallographica Section D Structural Biology 2023cited by 827position: middledoi
Rapid and efficient room-temperature serial synchrotron crystallography using the CFEL TapeDrive
IUCrJ 2022cited by 38position: middledoi
Fragment-linking peptide design yields a high-affinity ligand for microtubule-based transport
Cell chemical biology 2021cited by 21position: middledoi
Structural basis for isoform-specific kinesin-1 recognition of Y-acidic cargo adaptors
eLife 2018cited by 49position: lastdoi
A small-molecule activator of kinesin-1 drives remodeling of the microtubule network
Proceedings of the National Academy of Sciences 2017cited by 93position: middledoi
SKIP controls lysosome positioning using a composite kinesin-1 heavy and light chain-binding domain
Journal of Cell Science 2017cited by 45position: middledoi
The Dynamic Localization of Cytoplasmic Dynein in Neurons Is Driven by Kinesin-1
Neuron 2016cited by 126position: middledoi
Targeted redox inhibition of protein phosphatase 1 by Nox4 regulates <scp>eIF</scp> 2α‐mediated stress signaling
The EMBO Journal 2016cited by 116position: middledoi
The light chains of kinesin-1 are autoinhibited
Proceedings of the National Academy of Sciences 2016cited by 67position: middledoi
New insight into cofactor-free oxygenation from combined experimental and computational approaches
Current Opinion in Structural Biology 2016cited by 38position: lastdoi
Catalytic Mechanism of Cofactor-Free Dioxygenases and How They Circumvent Spin-Forbidden Oxygenation of Their Substrates
Journal of the American Chemical Society 2015cited by 90position: middledoi
Direct Evidence for a Peroxide Intermediate and a Reactive Enzyme–Substrate–Dioxygen Configuration in a Cofactor‐free Oxidase
Angewandte Chemie International Edition 2014cited by 48position: lastdoi
Origin of the Proton-transfer Step in the Cofactor-free (1H)-3-Hydroxy-4-oxoquinaldine 2,4-Dioxygenase
Journal of Biological Chemistry 2014cited by 34position: middledoi
Structural Basis for Kinesin-1:Cargo Recognition
Science 2013cited by 118position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Mark P. Dodding · University of the West of England7 papers (2013–2021)Soi Bui · King's College London6 papers (2014–2022)S. Pernigo · Sinopec (China)5 papers (2013–2018)Anneri Sanger · University of Cambridge4 papers (2016–2017)Yan Y. Yip · Medical Research Council4 papers (2016–2018)Maddy Parsons · King's College London3 papers (2016–2017)Nigel S. Scrutton · University of Manchester2 papers (2014–2015)Matthew G. Quesne · University of Manchester2 papers (2014–2015)Aitor Hernández‐Ortega · University of Manchester2 papers (2014–2015)Thomas S. Randall · King's College London2 papers (2017–2017)Sam P. de Visser · Indian Institute of Technology Guwahati2 papers (2014–2015)Derren J. Heyes · University of Manchester2 papers (2014–2015)Magda S. Chegkazi · King's College London2 papers (2018–2021)David von Stetten · European Bioinformatics Institute1 papers (2014–2014)D. Oberthüer · Australian National University1 papers (2022–2022)Eric Blanc · University of Parma1 papers (2016–2016) · 1 papers (2022–2022)Giovanna Brusatin · University of Padua1 papers (2025–2025)Holger Rohde · University of Warwick1 papers (2022–2022)Matteo Beretta · University of Turin1 papers (2016–2016)
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