Shinji Makino mainly investigates Virology, RNA, Virus, Coronavirus and Molecular biology. Many of his studies involve connections with topics such as Genetics and Virology. His RNA research includes elements of Complementary DNA, Messenger RNA, Oligonucleotide and Intron.
His Messenger RNA study combines topics from a wide range of disciplines, such as Protein biosynthesis, Gene expression and Cell biology. His Virus study incorporates themes from Reverse genetics, Recombination and Pathogenesis. His biological study spans a wide range of topics, including Apoptosis, Cell culture and Gene.
The scientist’s investigation covers issues in Virology, RNA, Virus, Molecular biology and Coronavirus. In the subject of general Virology, his work in Viral replication is often linked to Mouse hepatitis virus, thereby combining diverse domains of study. His research investigates the link between RNA and topics such as Transcription that cross with problems in Defective virus and RNA splicing.
His studies deal with areas such as Cell culture and Recombinant DNA as well as Virus. His study in Molecular biology is interdisciplinary in nature, drawing from both Vesicle-associated membrane protein 8, Helper virus, RNA polymerase, RNase P and Viral structural protein. The RNA-dependent RNA polymerase study combines topics in areas such as RNA silencing and RNA editing.
Shinji Makino mostly deals with Virus, Virology, Gene, Coronavirus and Viral replication. His research in Virus intersects with topics in Open reading frame, Sapelovirus and Outbreak. His study in the field of Vero cell also crosses realms of Ledipasvir.
His research integrates issues of RNA, NSP1, Translation and Cell biology in his study of Viral replication. He interconnects Phlebovirus and Polymerase in the investigation of issues within RNA. His work deals with themes such as Helper virus, Recombinant DNA, Molecular biology and Structural gene, which intersect with Viral structural protein.
Shinji Makino mainly focuses on Coronavirus, Virus, Virology, Cell biology and Viral replication. His research on Virus frequently connects to adjacent areas such as RNA. His RNA research incorporates elements of Interferon, Genome, Complementary DNA, Reporter gene and Electroporation.
When carried out as part of a general Virology research project, his work on Outbreak, Vero cell and Vaccine evaluation is frequently linked to work in Pneumonia and Sofosbuvir, therefore connecting diverse disciplines of study. His biological study deals with issues like Gene, which deal with fields such as Viral protein. His Viral replication research integrates issues from Viral Receptor, Mutant and NSP1.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
A structural analysis of M protein in coronavirus assembly and morphology
Benjamin W. Neuman;Gabriella Kiss;Andreas Hjarne Kunding;David Bhella.
Journal of Structural Biology (2011)
Severe Acute Respiratory Syndrome Coronavirus 2 from Patient with Coronavirus Disease, United States.
Jennifer Harcourt;Jennifer Harcourt;Azaibi Tamin;Xiaoyan Lu;Shifaq Kamili.
Emerging Infectious Diseases (2020)
Severe acute respiratory syndrome coronavirus nsp1 protein suppresses host gene expression by promoting host mRNA degradation.
Wataru Kamitani;Krishna Narayanan;Cheng Huang;Kumari Lokugamage.
Proceedings of the National Academy of Sciences of the United States of America (2006)
An infectious cDNA clone of SARS-CoV-2
Xuping Xie;Antonio Muruato;Kumari G. Lokugamage;Krishna Narayanan.
Cell Host & Microbe (2020)
Severe Acute Respiratory Syndrome Coronavirus nsp1 Suppresses Host Gene Expression, Including That of Type I Interferon, in Infected Cells
Krishna Narayanan;Cheng Huang;Kumari Lokugamage;Wataru Kamitani.
Journal of Virology (2008)
Molecular cloning and sequencing of a human hepatitis delta (δ) virus RNA
Shinji Makino;Ming Fu Chang;Chien Kou Shieh;Toshio Kamahora.
Nature (1987)
The Pathogenesis of Rift Valley Fever
Tetsuro Ikegami;Shinji Makino.
Viruses (2011)
A two-pronged strategy to suppress host protein synthesis by SARS coronavirus Nsp1 protein
Wataru Kamitani;Cheng Huang;Krishna Narayanan;Kumari G Lokugamage.
Nature Structural & Molecular Biology (2009)
High-frequency RNA recombination of murine coronaviruses.
Shinji Makino;J. G. Keck;S. A. Stohlman;M. M C Lai.
Journal of Virology (1986)
Characterization of the coronavirus M protein and nucleocapsid interaction in infected cells.
Krishna Narayanan;Akihiko Maeda;Junko Maeda;Shinji Makino.
Journal of Virology (2000)
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