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Vanja Nagy
Vanja Nagy
Ludwig Boltzmann Institute for Rare and Undiagnosed Diseases
Verified email at rud.lbg.ac.at
Title
Cited by
Cited by
Year
A presenilin-1/γ-secretase cleavage releases the E-cadherin intracellular domain and regulates disassembly of adherens junctions
P Marambaud, J Shioi, G Serban, A Georgakopoulos, S Sarner, V Nagy, ...
The EMBO journal 21 (8), 1948-1956, 2002
9082002
SHARPIN forms a linear ubiquitin ligase complex regulating NF-κB activity and apoptosis
F Ikeda, YL Deribe, SS Skånland, B Stieglitz, C Grabbe, M Franz-Wachtel, ...
Nature 471 (7340), 637-641, 2011
7842011
Heterodimerization of μ and δ opioid receptors: a role in opiate synergy
I Gomes, BA Jordan, A Gupta, N Trapaidze, V Nagy, LA Devi
The Journal of neuroscience 20 (22), RC110, 2000
6242000
Matrix metalloproteinase-9 is required for hippocampal late-phase long-term potentiation and memory
V Nagy, O Bozdagi, A Matynia, M Balcerzyk, P Okulski, J Dzwonek, ...
Journal of Neuroscience 26 (7), 1923-1934, 2006
5282006
Ovariectomy and 17β-estradiol modulate the levels of Alzheimer’s amyloid β peptides in brain
SS Petanceska, V Nagy, D Frail, S Gandy
Neurology 54 (12), 2212-2217, 2000
3442000
In vivo roles for matrix metalloproteinase-9 in mature hippocampal synaptic physiology and plasticity
O Bozdagi, V Nagy, KT Kwei, GW Huntley
Journal of neurophysiology 98 (1), 334-344, 2007
2092007
The rankl-rank story
V Nagy, JM Penninger
Gerontology 61 (6), 534-542, 2015
2002015
Ubiquitin ligase complexes: from substrate selectivity to conjugational specificity
V Nagy, I Dikic
Biological chemistry 391 (2-3), 163-169, 2010
1182010
The extracellular protease matrix metalloproteinase-9 is activated by inhibitory avoidance learning and required for long-term memory
V Nagy, O Bozdagi, GW Huntley
Learning & Memory 14 (10), 655-664, 2007
1142007
Identification of ALK in Thinness
M Orthofer, A Valsesia, R Mägi, QP Wang, J Kaczanowska, I Kozieradzki, ...
Cell 181 (6), 1246-1262. e22, 2020
822020
Cadherin‐8 and N‐cadherin differentially regulate pre‐and postsynaptic development of the hippocampal mossy fiber pathway
IH Bekirov, V Nagy, A Svoronos, GW Huntley, DL Benson
Hippocampus 18 (4), 349-363, 2008
752008
Prdm12 directs nociceptive sensory neuron development by regulating the expression of the NGF receptor TrkA
S Desiderio, S Vermeiren, C Van Campenhout, S Kricha, E Malki, ...
Cell reports 26 (13), 3522-3536. e5, 2019
552019
The evolutionarily conserved transcription factor PRDM12 controls sensory neuron development and pain perception
V Nagy, T Cole, C Van Campenhout, TM Khoung, C Leung, S Vermeiren, ...
Cell Cycle 14 (12), 1799-1808, 2015
532015
Network analysis reveals rare disease signatures across multiple levels of biological organization
P Buphamalai, T Kokotovic, V Nagy, J Menche
Nature communications 12 (1), 6306, 2021
442021
HACE1 deficiency leads to structural and functional neurodevelopmental defects
V Nagy, R Hollstein, TP Pai, MK Herde, P Buphamalai, P Moeseneder, ...
Neurology: Genetics 5 (3), e330, 2019
292019
PRDM12: new opportunity in pain research
S Imhof, T Kokotović, V Nagy
Trends in Molecular Medicine 26 (10), 895-897, 2020
122020
Cellular models and high-throughput screening for genetic causality of intellectual disability
CW Fell, V Nagy
Trends in Molecular Medicine 27 (3), 220-230, 2021
112021
Central RANK signalling in NPY neurons alters bone mass in male mice
NJ Lee, IM Clarke, RF Enriquez, V Nagy, J Penninger, PA Baldock, ...
Neuropeptides 68, 75-83, 2018
92018
FIBCD1 is an endocytic GAG receptor associated with a novel neurodevelopmental disorder
CW Fell, A Hagelkruys, A Cicvaric, M Horrer, L Liu, JSS Li, J Stadlmann, ...
EMBO Molecular Medicine 14 (9), e15829, 2022
72022
BioProfiling. jl: profiling biological perturbations with high-content imaging in single cells and heterogeneous populations
L Vulliard, J Hancock, A Kamnev, CW Fell, J Ferreira da Silva, JI Loizou, ...
Bioinformatics 38 (6), 1692-1699, 2022
62022
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Articles 1–20