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Tomoya S Kitajima

Showing results (41-50 of 52) with videos related to

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The Journal of Cell Biology|August 23, 2021
RanGTP and the actin cytoskeleton keep paternal and maternal chromosomes apart during fertilizationMasashi Mori, Tatsuma Yao, Tappei Mishina, et al.
EMBO Reports|May 19, 2022
Birth of mice from meiotically arrested spermatocytes following biparental meiosis in halved oocytesNarumi Ogonuki, Hirohisa Kyogoku, Toshiaki Hino, et al.
Nature|April 29, 2026
Cytoplasmic competition between separate parental pronuclei in zygotesHirohisa Kyogoku, Mitsusuke Tarama, Masahiro Matsuwaka, et al.
Genes to Cells : Devoted to Molecular & Cellular Mechanisms|July 24, 2024
Aging-associated reduction of chromosomal histones in mammalian oocytesMasashi Mori, Manami Koshiguchi, Osamu Takenouchi, et al.
The Journal of Cell Biology|March 9, 2016
ARHGEF17 is an essential spindle assembly checkpoint factor that targets Mps1 to kinetochoresMayumi Isokane, Thomas Walter, Robert Mahen, et al.
Nature Communications|May 29, 2020
Prc1-rich kinetochores are required for error-free acentrosomal spindle bipolarization during meiosis I in mouse oocytesShuhei Yoshida, Sui Nishiyama, Lisa Lister, et al.
Nature|December 17, 2020
Reconstitution of the oocyte transcriptional network with transcription factorsNobuhiko Hamazaki, Hirohisa Kyogoku, Hiromitsu Araki, et al.
Nature|December 24, 2014
Meikin is a conserved regulator of meiosis-I-specific kinetochore functionJihye Kim, Kei-ichiro Ishiguro, Aya Nambu, et al.
Nature|October 3, 2018
Author Correction: Meikin is a conserved regulator of meiosis-I-specific kinetochore functionJihye Kim, Kei-Ichiro Ishiguro, Aya Nambu, et al.
Nature|March 16, 2023
Generation of functional oocytes from male mice in vitroKenta Murakami, Nobuhiko Hamazaki, Norio Hamada, et al.
Pageof 6

Showing results (41-50 of 52) with videos related to

Sort By:
Pageof 6
The Journal of Cell Biology|August 23, 2021
RanGTP and the actin cytoskeleton keep paternal and maternal chromosomes apart during fertilizationMasashi Mori, Tatsuma Yao, Tappei Mishina, et al.
EMBO Reports|May 19, 2022
Birth of mice from meiotically arrested spermatocytes following biparental meiosis in halved oocytesNarumi Ogonuki, Hirohisa Kyogoku, Toshiaki Hino, et al.
Nature|April 29, 2026
Cytoplasmic competition between separate parental pronuclei in zygotesHirohisa Kyogoku, Mitsusuke Tarama, Masahiro Matsuwaka, et al.
Genes to Cells : Devoted to Molecular & Cellular Mechanisms|July 24, 2024
Aging-associated reduction of chromosomal histones in mammalian oocytesMasashi Mori, Manami Koshiguchi, Osamu Takenouchi, et al.
The Journal of Cell Biology|March 9, 2016
ARHGEF17 is an essential spindle assembly checkpoint factor that targets Mps1 to kinetochoresMayumi Isokane, Thomas Walter, Robert Mahen, et al.
Nature Communications|May 29, 2020
Prc1-rich kinetochores are required for error-free acentrosomal spindle bipolarization during meiosis I in mouse oocytesShuhei Yoshida, Sui Nishiyama, Lisa Lister, et al.
Nature|December 17, 2020
Reconstitution of the oocyte transcriptional network with transcription factorsNobuhiko Hamazaki, Hirohisa Kyogoku, Hiromitsu Araki, et al.
Nature|December 24, 2014
Meikin is a conserved regulator of meiosis-I-specific kinetochore functionJihye Kim, Kei-ichiro Ishiguro, Aya Nambu, et al.
Nature|October 3, 2018
Author Correction: Meikin is a conserved regulator of meiosis-I-specific kinetochore functionJihye Kim, Kei-Ichiro Ishiguro, Aya Nambu, et al.
Nature|March 16, 2023
Generation of functional oocytes from male mice in vitroKenta Murakami, Nobuhiko Hamazaki, Norio Hamada, et al.
Pageof 6