Curriculum Vitaes

Tomohiko Sadaoka

  (定岡 知彦)

Profile Information

Affiliation
Associate Professor, Division of Virus Persistence & Dynamics, Center for Infectious Disease Research, Research Promotion Headquarters, Fujita Health University
Degree
博士(歯学)(大阪大学)

Contact information
tomohiko.sadaokafujita-hu.ac.jp
J-GLOBAL ID
200901074193593340
researchmap Member ID
5000025000

Research Areas

 1

Major Papers

 30
  • Junichi Tanaka, Hidenobu Senpuku, Miho Ogawa, Rika Yasuhara, Shintaro Ohnuma, Koki Takamatsu, Takashi Watanabe, Yo Mabuchi, Shiro Nakamura, Shoko Ishida, Tomohiko Sadaoka, Takashi Takaki, Tatsuo Shirota, Toshikazu Shimane, Tomio Inoue, Takayoshi Sakai, Munemasa Mori, Takashi Tsuji, Ichiro Saito, Kenji Mishima
    Nature cell biology, 24(11) 1595-1605, Oct 17, 2022  Peer-reviewed
    Salivary glands act as virus reservoirs in various infectious diseases and have been reported to be targeted by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). However, the mechanisms underlying infection and replication in salivary glands are still enigmatic due to the lack of proper in vitro models. Here, we show that human induced salivary glands (hiSGs) generated from human induced pluripotent stem cells can be infected with SARS-CoV-2. The hiSGs exhibit properties similar to those of embryonic salivary glands and are a valuable tool for the functional analysis of genes during development. Orthotopically transplanted hiSGs can be engrafted at a recipient site in mice and show a mature phenotype. In addition, we confirm SARS-CoV-2 infection and replication in hiSGs. SARS-CoV-2 derived from saliva in asymptomatic individuals may participate in the spread of the virus. hiSGs may be a promising model for investigating the role of salivary glands as a virus reservoir.
  • Tomohiko Sadaoka, Daniel P. Depledge, Labchan Rajbhandari, Judith Breuer, Arun Venkatesan, Jeffrey I. Cohen
    mBio, Aug 30, 2022  Peer-reviewedLead authorCorresponding author
  • Werner J. D. Ouwendijk, Daniel P. Depledge, Labchan Rajbhandari, Tihana Lenac Rovis, Stipan Jonjic, Judith Breuer, Arun Venkatesan, Georges M. G. M. Verjans, Tomohiko Sadaoka
    Nature Communications, 11(1), Dec 10, 2020  Peer-reviewedLast authorCorresponding author
  • Shirley E. Braspenning, Tomohiko Sadaoka, Judith Breuer, Georges M.G.M Verjans, Werner J.D. Ouwendijk, Daniel P. Depledge
    mBio, 11(5), May 25, 2020  Peer-reviewed
  • Daniel P. Depledge, Kalanghad Puthankalam Srinivas, Tomohiko Sadaoka, Devin Bready, Yasuko Mori, Dimitris G. Placantonakis, Ian Mohr, Angus C. Wilson
    Nature Communications, 10(1) 754-754, Dec, 2019  Peer-reviewed
    Characterizing complex viral transcriptomes by conventional RNA sequencing approaches is complicated by high gene density, overlapping reading frames, and complex splicing patterns. Direct RNA sequencing (direct RNA-seq) using nanopore arrays offers an exciting alternative whereby individual polyadenylated RNAs are sequenced directly, without the recoding and amplification biases inherent to other sequencing methodologies. Here we use direct RNA-seq to profile the herpes simplex virus type 1 (HSV-1) transcriptome during productive infection of primary cells. We show how direct RNA-seq data can be used to define transcription initiation and RNA cleavage sites associated with all polyadenylated viral RNAs and demonstrate that low level read-through transcription produces a novel class of chimeric HSV-1 transcripts, including a functional mRNA encoding a fusion of the viral E3 ubiquitin ligase ICP0 and viral membrane glycoprotein L. Thus, direct RNA-seq offers a powerful method to characterize the changing transcriptional landscape of viruses with complex genomes.
  • Daniel P. Depledge, Werner J. D. Ouwendijk, Tomohiko Sadaoka, Shirley E. Braspenning, Yasuko Mori, Randall J. Cohrs, Georges M. G. M. Verjans, Judith Breuer
    Nature Communications, 9(1) 1167-1167, Dec, 2018  Peer-reviewedLead author
    Varicella-zoster virus (VZV), an alphaherpesvirus, establishes lifelong latent infection in the neurons of >90% humans worldwide, reactivating in one-third to cause shingles, debilitating pain and stroke. How VZV maintains latency remains unclear. Here, using ultra-deep virus-enriched RNA sequencing of latently infected human trigeminal ganglia (TG), we demonstrate the consistent expression of a spliced VZV mRNA, antisense to VZV open reading frame 61 (ORF61). The spliced VZV latency-associated transcript (VLT) is expressed in human TG neurons and encodes a protein with late kinetics in productively infected cells in vitro and in shingles skin lesions. Whereas multiple alternatively spliced VLT isoforms (VLTly) are expressed during lytic infection, a single unique VLT isoform, which specifically suppresses ORF61 gene expression in co-transfected cells, predominates in latently VZV-infected human TG. The discovery of VLT links VZV with the other better characterized human and animal neurotropic alphaherpesviruses and provides insights into VZV latency.
  • Sadaoka, T., Depledge, D.P., Rajbh, ari, L., Venkatesan, A., Breuer, J., Cohen, J.I.
    Proceedings of the National Academy of Sciences of the United States of America, 113(17) E2403-E2412, Apr 26, 2016  Peer-reviewedLead author

Misc.

 4

Books and Other Publications

 1

Presentations

 35

Research Projects

 7