Search Results - "Ou, Xiang‐Hong"
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Dynamics and clinical relevance of maternal mRNA clearance during the oocyte-to-embryo transition in humans
Published in Nature communications (01-10-2020)“…Maternal mRNA clearance is an essential process that occurs during maternal-to-zygotic transition (MZT). However, the dynamics, functional importance, and…”
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Effects of obesity and diabetes on the epigenetic modification of mammalian gametes
Published in Journal of cellular physiology (01-06-2019)“…Obesity and diabetes are closely associated with numerous reproductive disorders, including termination of ovulation, irregular menstruation, low fertility,…”
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3
CNOT6L couples the selective degradation of maternal transcripts to meiotic cell cycle progression in mouse oocyte
Published in The EMBO journal (14-12-2018)“…Meiotic resumption‐coupled degradation of maternal transcripts occurs during oocyte maturation in the absence of mRNA transcription. The CCR4–NOT complex has…”
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CFP1 coordinates histone H3 lysine-4 trimethylation and meiotic cell cycle progression in mouse oocytes
Published in Nature communications (28-08-2018)“…Trimethylation of histone H3 on lysine-4 (H3K4me3) is associated with gene-regulatory elements, but its transcription-independent function in cell division is…”
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Single‐cell RNA sequencing reveals the landscape of early female germ cell development
Published in The FASEB journal (01-09-2020)“…Meiosis initiation is a crucial step for the production of haploid gametes, which occurs from anterior to posterior in fetal ovaries. The asynchrony of the…”
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A combinatorial code for mRNA 3′-UTR-mediated translational control in the mouse oocyte
Published in Nucleic acids research (10-01-2019)“…Abstract Meiotic maturation of mammalian oocytes depends on the temporally and spatially regulated cytoplasmic polyadenylation and translational activation of…”
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PRC2 and EHMT1 regulate H3K27me2 and H3K27me3 establishment across the zygote genome
Published in Nature communications (11-12-2020)“…The formation of zygote is the beginning of mammalian life, and dynamic epigenetic modifications are essential for mammalian normal development. H3K27…”
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CFP1-dependent histone H3K4 trimethylation in murine oocytes facilitates ovarian follicle recruitment and ovulation in a cell-nonautonomous manner
Published in Cellular and molecular life sciences : CMLS (01-08-2020)“…CxxC-finger protein 1 (CFP1)-mediated trimethylated histone H3 at lysine-4 (H3K4me3) during oocyte development enables the oocyte genome to establish the…”
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Single-cell RNA sequencing analysis of mouse follicular somatic cells
Published in Biology of reproduction (15-11-2021)“…Within the development of ovarian follicle, in addition to cell proliferation and differentiation, sophisticated cell–cell cross talks are established among…”
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10
Single‐cell transcriptome analysis reveals that maternal obesity affects DNA repair, histone methylation, and autophagy level in mouse embryos
Published in Journal of cellular physiology (01-07-2021)“…Obesity causes many reproductive dysfunctions such as reduced conception, infertility, and early pregnancy loss, and this is largely due to the negative…”
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11
Mettl14 is required for mouse postimplantation development by facilitating epiblast maturation
Published in The FASEB journal (01-01-2019)“…ABSTRACT N6‐methyladenosine (m6A) is the most prevalent and reversible internal modification of mammalian messenger and noncoding RNAs mediated by specific m6A…”
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Effects of various calcium transporters on mitochondrial Ca2+ changes and oocyte maturation
Published in Journal of cellular physiology (01-09-2021)“…Ca2+ participates in many important cellular processes, but the underlying mechanisms are still poorly understood, especially during oocyte maturation. First,…”
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13
Increase of mitochondria surrounding spindle causes mouse oocytes arrested at metaphase I stage
Published in Biochemical and biophysical research communications (05-07-2020)“…During oocyte meiosis, mitochondria usually surround spindle to meet the energy demand of spindle migration and chromosome segregation. Therefore, the…”
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14
Cruciform DNA in mouse growing oocytes: Its dynamics and its relationship with DNA transcription
Published in PloS one (20-10-2020)“…Cruciform DNA is a causing factor of genome instability and chromosomal translocation, however, most studies about cruciform DNA in mammalian cells were based…”
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Mammalian nucleolar protein DCAF13 is essential for ovarian follicle maintenance and oocyte growth by mediating rRNA processing
Published in Cell death and differentiation (01-07-2019)“…During mammalian oocyte growth, chromatin configuration transition from the nonsurrounded nucleolus (NSN) to surrounded nucleolus (SN) type plays a key role in…”
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Chromosomal variants accumulate in genomes of the spontaneous aborted fetuses revealed by chromosomal microarray analysis
Published in PloS one (02-11-2021)“…Spontaneous abortion is an impeding factor for the success rates of human assistant reproductive technology (ART). Causes of spontaneous abortion include not…”
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FMNL2 regulates actin for endoplasmic reticulum and mitochondria distribution in oocyte meiosis
Published in eLife (15-05-2024)“…During mammalian oocyte meiosis, spindle migration and asymmetric cytokinesis are unique steps for the successful polar body extrusion. The asymmetry defects…”
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The N‐terminal His‐tag affects the triglyceride lipase activity of hormone‐sensitive lipase in testis
Published in Journal of cellular biochemistry (01-08-2019)“…The sterility of hormone‐sensitive lipase (HSL) knockout mice clearly shows the link between lipid metabolism and spermatogenesis. However, which substrate or…”
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Correction: Chromosomal variants accumulate in genomes of the spontaneous aborted fetuses revealed by chromosomal microarray analysis
Published in PloS one (21-01-2022)“…[This corrects the article DOI: 10.1371/journal.pone.0259518.]…”
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Double-strand breaks induce short-scale DNA replication and damage amplification in the fully grown mouse oocytes
Published in Genetics (Austin) (24-06-2021)“…Abstract Break-induced replication (BIR) is essential for the repair of DNA double-strand breaks (DSBs) with single ends. DSBs-induced microhomology-mediated…”
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