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A single-cell atlas of the myometrium in human parturition.人类分娩时的子宫肌单细胞图谱。
JCI Insight. 2022 Mar 8;7(5):e153921. doi: 10.1172/jci.insight.153921.
3
Molecular signatures of labor and nonlabor myometrium with parsimonious classification from 2 calcium transporter genes.从 2 个钙转运基因精简分类中具有劳动力和非劳动力的肌层分子特征。
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Developing a theoretical evolutionary framework to solve the mystery of parturition initiation.发展理论进化框架,以解决分娩启动之谜。
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Replicational Dilution of H3K27me3 in Mammalian Cells and the Role of Poised Promoters.哺乳动物细胞中 H3K27me3 的复制稀释作用及其在启动子预先设定中的作用。
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Dynamic transcriptome, accessible genome, and PGR cistrome profiles in the human myometrium.人类子宫肌层中的动态转录组、可及基因组和 PGR 顺式作用元件组谱。
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Improved CUT&RUN chromatin profiling tools.改良的 CUT&RUN 染色质分析工具。
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Targeted in situ genome-wide profiling with high efficiency for low cell numbers.高效靶向原位全基因组分析,适用于少量细胞。
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10
Orthotopic Ovarian Transplantation Procedures to Investigate the Life- and Health-span Influence of Ovarian Senescence in Female Mice.用于研究卵巢衰老对雌性小鼠寿命和健康寿命影响的原位卵巢移植程序。
J Vis Exp. 2018 Feb 12(132):56638. doi: 10.3791/56638.

早期妊娠子宫成纤维细胞中依赖KDM6B的表观遗传编程调节小鼠分娩时间。

KDM6B-dependent epigenetic programming of uterine fibroblasts in early pregnancy regulates parturition timing in mice.

作者信息

McIntyre Tara I, Valdez Omar, Kochhar Nathan P, Davidson Brittany, Samad Bushra, Qiu Longhui, Hu Kenneth, Combes Alexis J, Erlebacher Adrian

机构信息

Biomedical Sciences Program, University of California, San Francisco, San Francisco, CA 94143, USA; Department of Laboratory Medicine, University of California, San Francisco, San Francisco, CA 94143, USA.

Department of Laboratory Medicine, University of California, San Francisco, San Francisco, CA 94143, USA.

出版信息

Cell. 2025 Mar 6;188(5):1265-1279.e18. doi: 10.1016/j.cell.2024.12.019. Epub 2025 Jan 21.

DOI:10.1016/j.cell.2024.12.019
PMID:39842437
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11890963/
Abstract

Current efforts investigating parturition timing mechanisms have focused on the proximal triggers of labor onset generated in late pregnancy. By studying the delayed parturition phenotype of mice with uterine fibroblast deficiencies in the histone H3K27me3 demethylase KDM6B, we provide evidence that parturition timing is regulated by events that take place in early pregnancy. Immediately after copulation, uterine fibroblasts engage in a locus-specific epigenetic program that abruptly adjusts H3K27me3 levels across their genome. In the absence of KDM6B, many of the adjusted loci over-accumulate H3K27me3. This over-accumulation leads to nearby genes being misexpressed in mid-to-late gestation, a delayed effect partly attributable to a second locus-specific but KDM6B-independent process initiated within uterine fibroblasts soon after implantation. This second process employs progressive H3K27me3 loss to temporally structure post-midgestational patterns of gene induction. Further dissection of the ways uterine programming controls parturition timing may have relevance to human pregnancy complications such as preterm labor.

摘要

目前对分娩时间机制的研究工作主要集中在妊娠晚期产生的分娩开始的近端触发因素上。通过研究组蛋白H3K27me3去甲基化酶KDM6B缺乏的子宫成纤维细胞的小鼠延迟分娩表型,我们提供了证据表明分娩时间是由妊娠早期发生的事件调节的。交配后,子宫成纤维细胞立即参与一个位点特异性表观遗传程序,该程序会突然调整其基因组中的H3K27me3水平。在没有KDM6B的情况下,许多被调整的位点会过度积累H3K27me3。这种过度积累会导致附近基因在妊娠中后期错误表达,这种延迟效应部分归因于植入后不久在子宫成纤维细胞内启动的第二个位点特异性但与KDM6B无关的过程。第二个过程利用逐渐的H3K27me3丢失来暂时构建妊娠中期后基因诱导的模式。进一步剖析子宫编程控制分娩时间的方式可能与人类妊娠并发症如早产有关。