about
Maternal DCAF2 is crucial for maintenance of genome stability during the first cell cycle in mice.A MAPK cascade couples maternal mRNA translation and degradation to meiotic cell cycle progression in mouse oocytes.Mammalian nucleolar protein DCAF13 is essential for ovarian follicle maintenance and oocyte growth by mediating rRNA processingA combinatorial code for mRNA 3'-UTR-mediated translational control in the mouse oocyteCFP1 coordinates histone H3 lysine-4 trimethylation and meiotic cell cycle progression in mouse oocytesLoss of oocyte Rps26 in mice arrests oocyte growth and causes premature ovarian failureMaternal DCAF13 Regulates Chromatin Tightness to Contribute to Embryonic DevelopmentCXXC finger protein 1-mediated histone H3 lysine-4 trimethylation is essential for proper meiotic crossover formation in miceZAR1 and ZAR2 are required for oocyte meiotic maturation by regulating the maternal transcriptome and mRNA translational activationDCAF13 promotes pluripotency by negatively regulating SUV39H1 stability during early embryonic developmentCFP1-dependent histone H3K4 trimethylation in murine oocytes facilitates ovarian follicle recruitment and ovulation in a cell-nonautonomous mannerA story of birth and death: mRNA translation and clearance at the onset of maternal-to-zygotic transition in mammals†The CRL4-DCAF13 ubiquitin E3 ligase supports oocyte meiotic resumption by targeting PTEN degradationCNOT6L couples the selective degradation of maternal transcripts to meiotic cell cycle progression in mouse oocytePABPN1L mediates cytoplasmic mRNA decay as a placeholder during the maternal-to-zygotic transition
P50
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P50
description
researcher ORCID ID = 0000-0003-4544-4724
@en
name
Heng-Yu Fan
@ast
Heng-Yu Fan
@en
Heng-Yu Fan
@es
Heng-Yu Fan
@nl
type
label
Heng-Yu Fan
@ast
Heng-Yu Fan
@en
Heng-Yu Fan
@es
Heng-Yu Fan
@nl
prefLabel
Heng-Yu Fan
@ast
Heng-Yu Fan
@en
Heng-Yu Fan
@es
Heng-Yu Fan
@nl
P31
P496
0000-0003-4544-4724