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Uirusu|August 25, 2012
[Two different receptors for wild type measles virus]Maino Tahara, Makoto TakedaJournal of Virology|November 25, 2005
Contributions of matrix and large protein genes of the measles virus edmonston strain to growth in cultured cells as revealed by recombinant virusesMaino Tahara, Makoto Takeda, Yusuke YanagiJournal of Virology|April 20, 2007
Altered interaction of the matrix protein with the cytoplasmic tail of hemagglutinin modulates measles virus growth by affecting virus assembly and cell-cell fusionMaino Tahara, Makoto Takeda, Yusuke YanagiMethods in Molecular Biology (Clifton, N.J.)|May 14, 2024
Optical Control of Mononegavirus Gene Expression and ReplicationMaino Tahara, Takashi Okura, Moritoshi Sato, et al.Frontiers in Microbiology|February 21, 2012
Wild-Type Measles Virus is Intrinsically Dual-TropicMakoto Takeda, Maino Tahara, Noriyo Nagata, et al.Journal of Virology|December 22, 2006
Multiple amino acid substitutions in hemagglutinin are necessary for wild-type measles virus to acquire the ability to use receptor CD46 efficientlyMaino Tahara, Makoto Takeda, Fumio Seki, et al.Microbiology and Immunology|January 7, 2023
Generation of a photocontrollable recombinant bovine parainfluenza virus type 3Takashi Okura, Maino Tahara, Noriyuki Otsuki, et al.Journal of Virology|October 29, 2005
Long untranslated regions of the measles virus M and F genes control virus replication and cytopathogenicityMakoto Takeda, Shinji Ohno, Fumio Seki, et al.The Journal of Biological Chemistry|May 4, 2010
Epithelial-mesenchymal transition abolishes the susceptibility of polarized epithelial cell lines to measles virusYuta Shirogane, Makoto Takeda, Maino Tahara, et al.Pageof 26