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Virological characteristics of the SARS-CoV-2 Omicron EG.5.1 variant.
Tsujino S, Deguchi S, Nomai T, Padilla-Blanco M, Plianchaisuk A, Wang L, Begum MM, Uriu K, Mizuma K, Nao N, Kojima I, Tsubo T, Li J, Matsumura Y, Nagao M, Oda Y, Tsuda M, Anraku Y, Kita S, Yajima H, Sasaki-Tabata K, Guo Z, Hinay AA Jr, Yoshimatsu K, Yamamoto Y, Nagamoto T, Asakura H, Nagashima M, Sadamasu K, Yoshimura K, Nasser H, Jonathan M, Putri O, Kim Y, Chen L, Suzuki R, Tamura T, Maenaka K, Irie T, Matsuno K, Tanaka S, Ito J, Ikeda T, Takayama K, Zahradnik J, Hashiguchi T, Fukuhara T, Sato K; Genotype to Phenotype Japan (G2P‐Japan) Consortium. Tsujino S, et al. Among authors: tanaka s. Microbiol Immunol. 2024 Sep;68(9):305-330. doi: 10.1111/1348-0421.13165. Epub 2024 Jul 4. Microbiol Immunol. 2024. PMID: 38961765
Multiple mutations of SARS-CoV-2 Omicron BA.2 variant orchestrate its virological characteristics.
Kimura I, Yamasoba D, Nasser H, Ito H, Zahradnik J, Wu J, Fujita S, Uriu K, Sasaki J, Tamura T, Suzuki R, Deguchi S, Plianchaisuk A, Yoshimatsu K, Kazuma Y, Mitoma S, Schreiber G, Asakura H, Nagashima M, Sadamasu K, Yoshimura K, Takaori-Kondo A; Genotype to Phenotype Japan (G2P-Japan) Consortium; Ito J, Shirakawa K, Takayama K, Irie T, Hashiguchi T, Nakagawa S, Fukuhara T, Saito A, Ikeda T, Sato K. Kimura I, et al. J Virol. 2023 Oct 31;97(10):e0101123. doi: 10.1128/jvi.01011-23. Epub 2023 Oct 5. J Virol. 2023. PMID: 37796123 Free PMC article.
Virological characteristics of the SARS-CoV-2 BA.2.86 variant.
Tamura T, Mizuma K, Nasser H, Deguchi S, Padilla-Blanco M, Oda Y, Uriu K, Tolentino JEM, Tsujino S, Suzuki R, Kojima I, Nao N, Shimizu R, Wang L, Tsuda M, Jonathan M, Kosugi Y, Guo Z, Hinay AA Jr, Putri O, Kim Y, Tanaka YL, Asakura H, Nagashima M, Sadamasu K, Yoshimura K; Genotype to Phenotype Japan (G2P-Japan) Consortium; Saito A, Ito J, Irie T, Tanaka S, Zahradnik J, Ikeda T, Takayama K, Matsuno K, Fukuhara T, Sato K. Tamura T, et al. Among authors: tanaka yl, tanaka s. Cell Host Microbe. 2024 Feb 14;32(2):170-180.e12. doi: 10.1016/j.chom.2024.01.001. Epub 2024 Jan 26. Cell Host Microbe. 2024. PMID: 38280382 Free article.
Akaluc bioluminescence offers superior sensitivity to track in vivo dynamics of SARS-CoV-2 infection.
Tamura T, Ito H, Torii S, Wang L, Suzuki R, Tsujino S, Kamiyama A, Oda Y, Tsuda M, Morioka Y, Suzuki S, Shirakawa K, Sato K, Yoshimatsu K, Matsuura Y, Iwano S, Tanaka S, Fukuhara T. Tamura T, et al. Among authors: tanaka s. iScience. 2024 Mar 29;27(5):109647. doi: 10.1016/j.isci.2024.109647. eCollection 2024 May 17. iScience. 2024. PMID: 38638572 Free PMC article.
Involvement of SARS-CoV-2 accessory proteins in immunopathogenesis.
Ito H, Tamura T, Wang L, Mori K, Tsuda M, Suzuki R, Suzuki S, Yoshimatsu K, Tanaka S, Fukuhara T. Ito H, et al. Among authors: tanaka s. Microbiol Immunol. 2024 Jul;68(7):237-247. doi: 10.1111/1348-0421.13157. Epub 2024 Jun 4. Microbiol Immunol. 2024. PMID: 38837257
Virological characteristics of a SARS-CoV-2-related bat coronavirus, BANAL-20-236.
Fujita S, Plianchaisuk A, Deguchi S, Ito H, Nao N, Wang L, Nasser H, Tamura T, Kimura I, Kashima Y, Suzuki R, Suzuki S, Kida I, Tsuda M, Oda Y, Hashimoto R, Watanabe Y, Uriu K, Yamasoba D, Guo Z, Hinay AA Jr, Kosugi Y, Chen L, Pan L, Kaku Y, Chu H, Donati F, Temmam S, Eloit M, Yamamoto Y, Nagamoto T, Asakura H, Nagashima M, Sadamasu K, Yoshimura K, Suzuki Y; Genotype to Phenotype Japan (G2P-Japan) Consortium; Ito J, Ikeda T, Tanaka S, Matsuno K, Fukuhara T, Takayama K, Sato K. Fujita S, et al. Among authors: tanaka s. EBioMedicine. 2024 Jun;104:105181. doi: 10.1016/j.ebiom.2024.105181. Epub 2024 Jun 4. EBioMedicine. 2024. PMID: 38838469 Free PMC article.
Recently, BANAL-20-236 (B236) was isolated from a rectal swab of Malayan horseshoe bat and was found to lack a furin cleavage site (FCS) in the spike (S) protein. The comparison of its virological characteristics with FCS-deleted SARS-CoV-2 (SC2deltaFCS) has not been condu …
Recently, BANAL-20-236 (B236) was isolated from a rectal swab of Malayan horseshoe bat and was found to lack a furin cleavage site (FCS) in …
Structural basis for receptor-binding domain mobility of the spike in SARS-CoV-2 BA.2.86 and JN.1.
Yajima H, Anraku Y, Kaku Y, Kimura KT, Plianchaisuk A, Okumura K, Nakada-Nakura Y, Atarashi Y, Hemmi T, Kuroda D, Takahashi Y, Kita S, Sasaki J, Sumita H; Genotype to Phenotype Japan (G2P-Japan) Consortium; Ito J, Maenaka K, Sato K, Hashiguchi T. Yajima H, et al. Nat Commun. 2024 Oct 7;15(1):8574. doi: 10.1038/s41467-024-52808-2. Nat Commun. 2024. PMID: 39375326 Free PMC article.
Induction of IGHV3-53 public antibodies with broadly neutralising activity against SARS-CoV-2 including Omicron subvariants in a Delta breakthrough infection case.
Kuwata T, Kaku Y, Biswas S, Matsumoto K, Shimizu M, Kawanami Y, Uraki R, Okazaki K, Minami R, Nagasaki Y, Nagashima M, Yoshida I, Sadamasu K, Yoshimura K, Ito M, Kiso M, Yamayoshi S, Imai M, Ikeda T, Sato K, Toyoda M, Ueno T, Inoue T, Tanaka Y, Kimura KT, Hashiguchi T, Sugita Y, Noda T, Morioka H, Kawaoka Y, Matsushita S; Genotype to Phenotype Japan (G2P-Japan) Consortium. Kuwata T, et al. Among authors: tanaka y. EBioMedicine. 2024 Dec;110:105439. doi: 10.1016/j.ebiom.2024.105439. Epub 2024 Nov 1. EBioMedicine. 2024. PMID: 39488016 Free PMC article.
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