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Peter Horvath
Peter Horvath
Szeged, Helsinki, ETH Zurich, INRIA, Sophia Antipolis
Verified email at brc.hu - Homepage
Title
Cited by
Cited by
Year
SARS-CoV-2 entry factors are highly expressed in nasal epithelial cells together with innate immune genes
W Sungnak, N Huang, C Bécavin, M Berg, R Queen, M Litvinukova, ...
Nature medicine 26 (5), 681-687, 2020
27152020
SARS-CoV-2 receptor ACE2 is an interferon-stimulated gene in human airway epithelial cells and is detected in specific cell subsets across tissues
CGK Ziegler, SJ Allon, SK Nyquist, IM Mbano, VN Miao, CN Tzouanas, ...
Cell 181 (5), 1016-1035. e19, 2020
22332020
Neuropilin-1 is a host factor for SARS-CoV-2 infection
JL Daly, B Simonetti, K Klein, KE Chen, MK Williamson, C Antón-Plágaro, ...
Science 370 (6518), 861-865, 2020
11552020
Data-analysis strategies for image-based cell profiling
JC Caicedo, S Cooper, F Heigwer, S Warchal, P Qiu, C Molnar, ...
Nature methods 14 (9), 849-863, 2017
5802017
Single-cell meta-analysis of SARS-CoV-2 entry genes across tissues and demographics
C Muus, MD Luecken, G Eraslan, L Sikkema, A Waghray, G Heimberg, ...
Nature medicine 27 (3), 546-559, 2021
534*2021
Screening out irrelevant cell-based models of disease
P Horvath, N Aulner, M Bickle, AM Davies, ED Nery, D Ebner, ...
Nature reviews Drug discovery 15 (11), 751-769, 2016
4942016
Phosphorylation of Nup98 by multiple kinases is crucial for NPC disassembly during mitotic entry
E Laurell, K Beck, K Krupina, G Theerthagiri, B Bodenmiller, P Horvath, ...
Cell 144 (4), 539-550, 2011
2722011
Longitudinal multi-omics analyses identify responses of megakaryocytes, erythroid cells, and plasmablasts as hallmarks of severe COVID-19
JP Bernardes, N Mishra, F Tran, T Bahmer, L Best, JI Blase, D Bordoni, ...
Immunity 53 (6), 1296-1314. e9, 2020
2692020
Influenza A virus uses the aggresome processing machinery for host cell entry
I Banerjee, Y Miyake, SP Nobs, C Schneider, P Horvath, M Kopf, ...
Science 346 (6208), 473-477, 2014
2532014
A protein inventory of human ribosome biogenesis reveals an essential function of exportin 5 in 60S subunit export
T Wild, P Horvath, E Wyler, B Widmann, L Badertscher, I Zemp, K Kozak, ...
PLoS biology 8 (10), e1000522, 2010
2192010
Ex vivo drug response profiling detects recurrent sensitivity patterns in drug-resistant acute lymphoblastic leukemia
V Frismantas, MP Dobay, A Rinaldi, J Tchinda, SH Dunn, J Kunz, ...
Blood, The Journal of the American Society of Hematology 129 (11), e26-e37, 2017
2062017
nucleAIzer: a parameter-free deep learning framework for nucleus segmentation using image style transfer
R Hollandi, A Szkalisity, T Toth, E Tasnadi, C Molnar, B Mathe, I Grexa, ...
Cell Systems 10 (5), 453-458. e6, 2020
194*2020
The host nonsense-mediated mRNA decay pathway restricts mammalian RNA virus replication
G Balistreri, P Horvath, C Schweingruber, D Zünd, G McInerney, A Merits, ...
Cell host & microbe 16 (3), 403-411, 2014
1762014
Test-time augmentation for deep learning-based cell segmentation on microscopy images
N Moshkov, B Mathe, A Kertesz-Farkas, R Hollandi, P Horvath
Scientific reports 10 (1), 5068, 2020
1682020
Deep Visual Proteomics defines single-cell identity and heterogeneity
A Mund, F Coscia, A Kriston, R Hollandi, F Kovács, AD Brunner, E Migh, ...
Nature Biotechnology 40 (8), 1231-1240, 2022
166*2022
Seipin facilitates triglyceride flow to lipid droplet and counteracts droplet ripening via endoplasmic reticulum contact
VT Salo, S Li, H Vihinen, M Hölttä-Vuori, A Szkalisity, P Horvath, ...
Developmental cell 50 (4), 478-493. e9, 2019
1552019
CIDRE: an illumination-correction method for optical microscopy
K Smith, Y Li, F Piccinini, G Csucs, C Balazs, A Bevilacqua, P Horvath
Nature methods 12 (5), 404-406, 2015
1432015
Near Surface Swimming of Salmonella Typhimurium Explains Target-Site Selection and Cooperative Invasion
B Misselwitz, N Barrett, S Kreibich, P Vonaesch, D Andritschke, S Rout, ...
PLoS Pathogens 8 (7), 2012
1392012
CellTracker (not only) for dummies
F Piccinini, A Kiss, P Horvath
Bioinformatics 32 (6), 955-957, 2016
1212016
Diffusion and retention are major determinants of protein targeting to the inner nuclear membrane
R Ungricht, M Klann, P Horvath, U Kutay
Journal of Cell Biology 209 (5), 687-704, 2015
1142015
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