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Science (New York, N.Y.)|April 20, 2019
Restriction of PD-1 function by <i>cis</i>-PD-L1/CD80 interactions is required for optimal T cell responsesDaisuke Sugiura, Takumi Maruhashi, Il-Mi Okazaki, et al.Life Science Alliance|September 6, 2023
VDR is an essential regulator of hair follicle regression through the progression of cell deathYudai Joko, Yoko Yamamoto, Shigeaki Kato, et al.Biology Open|January 29, 2020
The absence of SOX2 in the anterior foregut alters the esophagus into trachea and bronchi in both epithelial and mesenchymal componentsMachiko Teramoto, Ryo Sugawara, Katsura Minegishi, et al.Cell Reports|September 19, 2025
p53-mediated regulation of epiblast cell numbers predicts reactivation during mouse embryonic diapauseMegumi Murata, Akihito Harada, Haruka Hirose, et al.Nature|February 19, 2011
Tbx6-dependent Sox2 regulation determines neural or mesodermal fate in axial stem cellsTatsuya Takemoto, Masanori Uchikawa, Megumi Yoshida, et al.Genes to Cells : Devoted to Molecular & Cellular Mechanisms|April 1, 2016
R26-WntVis reporter mice showing graded response to Wnt signal levelsTatsuya Takemoto, Takaya Abe, Hiroshi Kiyonari, et al.Acta Veterinaria Hungarica|March 1, 2017
Sensitivity of the meiotic stage to hyperthermia during in vitro maturation of porcine oocytesKatsutoshi Nishio, Mado Yamazaki, Masayasu Taniguchi, et al.Developmental Biology|December 28, 2010
The Pou5f1/Pou3f-dependent but SoxB-independent regulation of conserved enhancer N2 initiates Sox2 expression during epiblast to neural plate stages in vertebratesMakiko Iwafuchi-Doi, Yuzo Yoshida, Daria Onichtchouk, et al.The Journal of Veterinary Medical Science|March 8, 2016
The optimal period of Ca-EDTA treatment for parthenogenetic activation of porcine oocytes during maturation cultureYasuhiro Morita, Masayasu Taniguchi, Fuminori Tanihara, et al.Development, Growth & Differentiation|April 11, 2020
Point mutagenesis in mouse reveals contrasting pathogenetic effects between MEN2B- and Hirschsprung disease-associated missense mutations of the RET geneTaichi Nakatani, Mitsuhiro Iwasaki, Atsuhiro Yamamichi, et al.Pageof 5