The X chromosome dosage compensation program during the development of cynomolgus monkeys

X chromosome dosage compensation ensures balanced gene dosage between the X chromosome and autosomes and between the sexes, involving divergent mechanisms among mammals. We elucidated a distinct mechanism for X chromosome inactivation (XCI) in cynomolgus monkeys, a model for human development. The t...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2021-11, Vol.374 (6570), p.954-eabd8887, Article 8887
Hauptverfasser: Okamoto, Ikuhiro, Nakamura, Tomonori, Sasaki, Kotaro, Yabuta, Yukihiro, Iwatani, Chizuru, Tsuchiya, Hideaki, Nakamura, Shin-Ichiro, Ema, Masatsugu, Yamamoto, Takuya, Saitou, Mitinori
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Sprache:eng
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Zusammenfassung:X chromosome dosage compensation ensures balanced gene dosage between the X chromosome and autosomes and between the sexes, involving divergent mechanisms among mammals. We elucidated a distinct mechanism for X chromosome inactivation (XCI) in cynomolgus monkeys, a model for human development. The trophectoderm and cytotrophoblast acquire XCI around implantation through an active intermediate bearing repressive modifications and compacted structure, whereas the amnion, epiblast, and hypoblast maintain such an intermediate protractedly, attaining XCI by a week after implantation. Males achieve X chromosome up-regulation (XCU) progressively, whereas females show XCU coincidentally with XCI, both establishing the X:autosome dosage compensation by 1 week after implantation. Conversely, primordial germ cells undergo X chromosome reactivation by reversing the XCI pathway early during their development. Our findings establish a foundation for clarifying the dosage compensation mechanisms in primates, including humans.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.abd8887