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Vanessa Checchetto

University of Padua · IT
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Area of research
Molecular Biology · Clinical Biochemistry
Research interest
Research interests include Mitochondrion, Biology, Cell biology, Ion channel, Potassium channel, and Biophysics.
h-index
citations
2,484
works
27
NIH funding
primary concept
email

Recent publications

BioID-based intact cell interactome of the Kv1.3 potassium channel identifies a Kv1.3-STAT3-p53 cellular signaling pathway
Science Advances 2024cited by 17position: middledoi
Interactomic exploration of LRRC8A in volume-regulated anion channels
Cell Death Discovery 2024cited by 13position: lastdoi
Pharmacological targeting of the mitochondrial calcium-dependent potassium channel KCa3.1 triggers cell death and reduces tumor growth and metastasis in vivo
Cell Death and Disease 2022cited by 28position: middledoi
Voltage-Dependent Anion Selective Channel 3: Unraveling Structural and Functional Features of the Least Known Porin Isoform
Frontiers in Physiology 2022cited by 22position: lastdoi
Mitochondrial K+ channels and their implications for disease mechanisms
Pharmacology & Therapeutics 2021cited by 56position: firstdoi
Mitochondrial Ion Channels of the Inner Membrane and Their Regulation in Cell Death Signaling
Frontiers in Cell and Developmental Biology 2021cited by 46position: middledoi
Routes for Potassium Ions across Mitochondrial Membranes: A Biophysical Point of View with Special Focus on the ATP-Sensitive K+ Channel
Biomolecules 2021cited by 21position: middledoi
Identification of an ATP-sensitive potassium channel in mitochondria
Nature 2019cited by 246position: middledoi
F‐<scp>ATP</scp> synthase and the permeability transition pore: fewer doubts, more certainties
FEBS Letters 2019cited by 55position: middledoi
Mitochondrial Kv1.3: a New Target in Cancer Biology?
Cellular Physiology and Biochemistry 2019cited by 29position: firstdoi
Targeting the Mitochondrial Potassium Channel Kv1.3 to Kill Cancer Cells: Drugs, Strategies, and New Perspectives
SLAS DISCOVERY 2019cited by 25position: middledoi
High-Conductance Channel Formation in Yeast Mitochondria is Mediated by F-ATP Synthase e and g Subunits
Cellular Physiology and Biochemistry 2018cited by 66position: middledoi
Pharmacological modulation of mitochondrial ion channels
British Journal of Pharmacology 2018cited by 48position: middledoi
Targeting Mitochondrial Ion Channels to Fight Cancer
International Journal of Molecular Sciences 2018cited by 25position: middledoi
Mitochondrial potassium channels in cell death
Biochemical and Biophysical Research Communications 2017cited by 37position: firstdoi
A MICU1 Splice Variant Confers High Sensitivity to the Mitochondrial Ca2+ Uptake Machinery of Skeletal Muscle
Molecular Cell 2016cited by 115position: middledoi
VDAC3 as a sensor of oxidative state of the intermembrane space of mitochondria: the putative role of cysteine residue modifications
Oncotarget 2016cited by 86position: middledoi
Ion Channels in Plant Bioenergetic Organelles, Chloroplasts and Mitochondria: From Molecular Identification to Function
Molecular Plant 2016cited by 67position: middledoi
Physiology of intracellular potassium channels: A unifying role as mediators of counterion fluxes?
Biochimica et Biophysica Acta (BBA) - Bioenergetics 2016cited by 59position: firstdoi
Calcium Flux across Plant Mitochondrial Membranes: Possible Molecular Players
Frontiers in Plant Science 2016cited by 18position: middledoi
MICU1 and MICU2 Finely Tune the Mitochondrial Ca2+ Uniporter by Exerting Opposite Effects on MCU Activity
Molecular Cell 2014cited by 510position: middledoi
F-ATPase of Drosophila melanogaster Forms 53-Picosiemen (53-pS) Channels Responsible for Mitochondrial Ca2+-induced Ca2+ Release
Journal of Biological Chemistry 2014cited by 71position: middledoi
Recombinant Human Voltage Dependent Anion Selective Channel Isoform 3 (hVDAC3) Forms Pores with a Very Small Conductance
Cellular Physiology and Biochemistry 2014cited by 70position: firstdoi
The mitochondrial calcium uniporter is a multimer that can include a dominant‐negative pore‐forming subunit
The EMBO Journal 2013cited by 487position: middledoi
A Thylakoid-Located Two-Pore K <sup>+</sup> Channel Controls Photosynthetic Light Utilization in Plants
Science 2013cited by 155position: middledoi
Regulation of photosynthesis by ion channels in cyanobacteria and higher plants
Biophysical Chemistry 2013cited by 45position: firstdoi
Thylakoid potassium channel is required for efficient photosynthesis in cyanobacteria
Proceedings of the National Academy of Sciences 2012cited by 67position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Ildikò Szabó · University of Padua21 papers (2012–2024)Luigi Leanza · University of Padua9 papers (2012–2024)Enrico Teardo · University of Padua7 papers (2013–2016)Elena Prosdocimi · University of Padua6 papers (2018–2024)Rosario Rizzuto · University of Padua5 papers (2013–2021)Luca Carraretto · University of Padua5 papers (2013–2016)Magdalena Bachmann · University of Padua5 papers (2018–2024)Diego De Stefani · University of Padua4 papers (2013–2021)Roberta Peruzzo · University of Padua4 papers (2017–2024)Anna Raffaello · University of Padua3 papers (2013–2016) · 3 papers (2012–2016)Giorgio M. Giacometti · University of Padua3 papers (2012–2013)Erich Gulbins · Virginia Commonwealth University3 papers (2021–2024) · 3 papers (2014–2022)Elide Formentin · University of Padua3 papers (2013–2016)Paolo Bernardi · University of Verona3 papers (2014–2019)Michela Carraro · University of Padua2 papers (2018–2019)Andrea Rossa · University of Padua2 papers (2018–2022)Elisabetta Bergantino · University of Padua2 papers (2012–2013) · 2 papers (2014–2016)
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