BETA: Related publications
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Schmidt KW, Montespan C, Thompson D, et al. (2024) Selective autophagy impedes KSHV entry after recruiting the membrane damage sensor galectin-8 to virus-containing endosomes. Cell Reports. 43: 115019 |
Schwartz U, Komatsu T, Huber C, et al. (2023) Changes in adenoviral chromatin organization precede early gene activation upon infection. The Embo Journal. e114162 |
Lagadec F, Carlon-Andres I, Ragues J, et al. (2021) CRM1 promotes capsid disassembly and nuclear envelope translocation of adenovirus independently of its export function. Journal of Virology. JVI0127321 |
Carlon-Andres I, Lagadec F, Pied N, et al. (2020) Nup358 and Transportin 1 Cooperate in Adenoviral Genome Import. Journal of Virology. 94 |
Pied N, Wodrich H. (2019) Imaging the adenovirus infection cycle. Febs Letters. 593: 3419-3448 |
Genoveso MJ, Hisaoka M, Komatsu T, et al. (2019) Formation of adenovirus DNA replication compartments and viral DNA accumulation sites by host chromatin regulatory proteins including NPM1. The Febs Journal |
Komatsu T, Quentin-Froignant C, Carlon-Andres I, et al. (2018) labelling of adenovirus DNA identifies chromatin anchoring and biphasic genome replication. Journal of Virology |
Montespan C, Marvin SA, Austin S, et al. (2017) Multi-layered control of Galectin-8 mediated autophagy during adenovirus cell entry through a conserved PPxY motif in the viral capsid. Plos Pathogens. 13: e1006217 |
Komatsu T, Nagata K, Wodrich H. (2016) The Role of Nuclear Antiviral Factors against Invading DNA Viruses: The Immediate Fate of Incoming Viral Genomes. Viruses. 8 |
Komatsu T, Robinson DR, Hisaoka M, et al. (2016) Tracking adenovirus genomes identifies morphologically distinct late DNA replication compartments. Traffic (Copenhagen, Denmark) |