TY - JOUR
T1 - Establishment of DNA methylation during primate germ cell development
AU - Kojima, Kazuaki
AU - Li, Yi
AU - Tomizawa, Shin Ichi
AU - Kohara, Miho
AU - Kuze, Yuta
AU - Sato, Takuya
AU - Ebata, Toshinobu
AU - Kubiura-Ichimaru, Musashi
AU - Cao, Mei
AU - Hattori, Tatsuya
AU - Maezawa, So
AU - Winge, Sofia B.
AU - Almstrup, Kristian
AU - Nakaki, Ryo
AU - Sato, Shinya
AU - Miyagi, Yohei
AU - Daigo, Yataro
AU - Yoshioka, Takako
AU - Hasegawa, Yuichi
AU - Kinoshita, Yoshiaki
AU - Hyuga, Taiju
AU - Moriya, Kimihiko
AU - Kobayashi, Hideyuki
AU - Baskin, Laurence
AU - Sankai, Tadashi
AU - Watanabe, Toshiaki
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/12
Y1 - 2026/12
N2 - DNA methylation is almost completely erased throughout the genome in primordial germ cells, and then reestablished during mammalian germ cell development. In this study, we demonstrate that in three primate species—marmosets, macaques, and humans–de novo methylation occurs postnatally in prospermatogonia in males and growing oocytes in females. In monkey prospermatogonia, de novo methylation is a prolonged process spanning 6 months to 1 year, primarily occurring within the first year after birth. In human testes, this process may occur more slowly over an extended period. Single-cell bisulfite sequencing analyses in spermatogonia of three species revealed that all genomic regions acquire DNA methylation gradually. However, DNA methylation levels increase faster in genic regions compared to intergenic regions. Unlike in mice, mitotic divisions occur during the establishment of methylation in prospermatogonia. The established methylation is likely maintained because maintenance methyltransferase DNMT1 is specifically expressed during the mitotic stage. Our findings show notable differences in the de novo DNA methylation processes in male germ cells between mice and primates.
AB - DNA methylation is almost completely erased throughout the genome in primordial germ cells, and then reestablished during mammalian germ cell development. In this study, we demonstrate that in three primate species—marmosets, macaques, and humans–de novo methylation occurs postnatally in prospermatogonia in males and growing oocytes in females. In monkey prospermatogonia, de novo methylation is a prolonged process spanning 6 months to 1 year, primarily occurring within the first year after birth. In human testes, this process may occur more slowly over an extended period. Single-cell bisulfite sequencing analyses in spermatogonia of three species revealed that all genomic regions acquire DNA methylation gradually. However, DNA methylation levels increase faster in genic regions compared to intergenic regions. Unlike in mice, mitotic divisions occur during the establishment of methylation in prospermatogonia. The established methylation is likely maintained because maintenance methyltransferase DNMT1 is specifically expressed during the mitotic stage. Our findings show notable differences in the de novo DNA methylation processes in male germ cells between mice and primates.
UR - https://www.scopus.com/pages/publications/105040928186
U2 - 10.1038/s41467-026-71405-z
DO - 10.1038/s41467-026-71405-z
M3 - Journal article
C2 - 41951630
AN - SCOPUS:105040928186
SN - 2041-1722
VL - 17
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 4983
ER -