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挖掘接受态子宫内膜的小鼠转录组揭示了腔上皮和腺上皮不同的分子特征。

Mining the mouse transcriptome of receptive endometrium reveals distinct molecular signatures for the luminal and glandular epithelium.

作者信息

Niklaus Andrea L, Pollard Jeffrey W

机构信息

Department of Developmental and Molecular Biology, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, New York 10461, USA.

出版信息

Endocrinology. 2006 Jul;147(7):3375-90. doi: 10.1210/en.2005-1665. Epub 2006 Apr 20.

Abstract

Epithelia coat most tissues where they sense and respond to the environment and participate in innate immune responses. In the adult mouse uterus, columnar epithelium lines the central lumen and the glands that penetrate the underlying stroma. A nidatory surge of estrogen causes differentiation of the luminal epithelium to the receptive state that permits blastocyst attachment and allows subsequent implantation. Here, using laser-capture microdissection to isolate the luminal and glandular epithelia separately, we have profiled gene expression 2 h before embryo attachment to determine whether there are unique roles for these two epithelial structures in this process. Although most genes were expressed in both compartments, there was greater expression of 153 and 118 genes in the lumen and glands, respectively. In the luminal epithelium, there is enrichment in lipid, metal-ion binding, and carbohydrate-metabolizing enzymes, whereas in the glands, immune response genes are emphasized. In situ hybridization to uterine sections obtained from mice during the preimplantation period validated these data and indicated an array of previously undocumented genes expressed with unique patterns in these epithelia. The data show that each epithelial compartment has a distinct molecular signature and that they act differentially and synergistically to permit blastocyst implantation.

摘要

上皮覆盖着大多数组织,在这些组织中它们感知并响应环境,参与固有免疫反应。在成年小鼠子宫中,柱状上皮衬于中央管腔以及穿透下方基质的腺体表面。雌激素的着床前激增会使腔上皮分化为接受状态,从而允许囊胚附着并随后着床。在此,我们使用激光捕获显微切割技术分别分离腔上皮和腺上皮,在胚胎附着前2小时对基因表达进行了分析,以确定这两种上皮结构在此过程中是否具有独特作用。尽管大多数基因在两个区域均有表达,但分别有153个和118个基因在腔和腺体中有更高的表达。在腔上皮中,脂质、金属离子结合和碳水化合物代谢酶的表达丰富,而在腺体中,免疫反应基因受到强调。对植入前小鼠子宫切片进行原位杂交验证了这些数据,并表明一系列以前未记录的基因在这些上皮中以独特模式表达。数据表明,每个上皮区域都有独特的分子特征,它们以不同且协同的方式发挥作用以允许囊胚着床。

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