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Author Details

Hong Han
Hangzhou City University
2009
19
12
PMIDPaper TitleJournal TitlePublished Year
37807299Integration of human organoids single-cell transcriptomic profiles and human genetics repurposes critical cell type-specific drug targets for severe COVID-19.Cell Prolif2024
36695474Eukaryotic translation initiation factor eIF4E-5 is required for spermiogenesis in Drosophila melanogaster.Development2023
35914530Systematic exploration of dynamic splicing networks reveals conserved multistage regulators of neurogenesis.Mol Cell2022
36178522The proteomic landscape of glioblastoma recurrence reveals novel and targetable immunoregulatory drivers.Acta Neuropathol2022
33658502A multiplexed, next generation sequencing platform for high-throughput detection of SARS-CoV-2.Nat Commun2021
32968282Functional genomic landscape of cancer-intrinsic evasion of killing by T cells.Nature2020
31978041Makorin 1 controls embryonic patterning by alleviating Bruno1-mediated repression of oskar translation.PLoS Genet2020
30970261Essential Gene Profiles for Human Pluripotent Stem Cells Identify Uncharacterized Genes and Substrate Dependencies.Cell Rep2019
31551467A ribosomal protein S5 isoform is essential for oogenesis and interacts with distinct RNAs in Drosophila melanogaster.Sci Rep2019
30388412Genome-wide CRISPR-Cas9 Interrogation of Splicing Networks Reveals a Mechanism for Recognition of Autism-Misregulated Neuronal Microexons.Mol Cell2018
28157508Multilayered Control of Alternative Splicing Regulatory Networks by Transcription Factors.Mol Cell2017
25877919Myc and SAGA rewire an alternative splicing network during early somatic cell reprogramming.Genes Dev2015
26109054Corrigendum: Myc and SAGA rewire an alternative splicing network during early somatic cell reprogramming.Genes Dev2015
23739326MBNL proteins repress ES-cell-specific alternative splicing and reprogramming.Nature2013
23716590Mextli is a novel eukaryotic translation initiation factor 4E-binding protein that promotes translation in Drosophila melanogaster.Mol Cell Biol2013
22833128Eukaryotic initiation factor 4E-3 is essential for meiotic chromosome segregation, cytokinesis and male fertility in Drosophila.Development2012
21925324SnapShot: High-throughput sequencing applications.Cell2011
19393317Bruno negatively regulates germ cell-less expression in a BRE-independent manner.Mech Dev2009
19952109Vasa promotes Drosophila germline stem cell differentiation by activating mei-P26 translation by directly interacting with a (U)-rich motif in its 3' UTR.Genes Dev2009
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Collaborators

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Co-authored papers 8
University of Toronto
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McGill University. Montreal
Co-authored papers 7
Lunenfeld-Tanenbaum Research Institute Mount Sinai Hospital
Co-authored papers 6
University of Perugia
Co-authored papers 4
College Street, University of Toronto
Co-authored papers 3
College of Medicine, University of Saskatchewan
Co-authored papers 3
University of Toronto
Co-authored papers 3
Baylor College of Medicine
Co-authored papers 2
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Co-authored papers 2
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Co-authored papers 2
College Street, University of Toronto
Co-authored papers 2
Lunenfeld-Tanenbaum Research Institute
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The Hospital for Sick Children
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McMaster University
Co-authored papers 1
Margaret Cancer Center
Co-authored papers 1
McMaster Stem Cell and Cancer Research Institute
Co-authored papers 1
Co-authored papers 1
McMaster University
Co-authored papers 1
Co-authored papers 1
Princess Margaret Cancer Centre, University Health Network
Co-authored papers 1
Co-authored papers 1
McMaster University
Co-authored papers 1
McMaster University
Co-authored papers 1
University of Toronto
Co-authored papers 1
McMaster University
Co-authored papers 1
Cumming School of Medicine, University of Calgary
Co-authored papers 1
Westlake University
Co-authored papers 1
Princess Margaret Cancer Centre, University Health Network, University of Toronto
Co-authored papers 1
Division of Geophysical and Planetary sciences,California Institute of Technology
Co-authored papers 1