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绵羊胚胎在妊娠第14至15天表达磷脂酶抑制基因,与干扰素-τ(IFNT)通路相互作用。

Ovine conceptuses express phospholipase inhibitory genes on days 14-15 of pregnancy, interacting with IFNT pathways.

作者信息

Matsuno Yuta, Kusama Kazuya, Kimura Koji, Imakawa Kazuhiko

出版信息

Reproduction. 2025 Jan 11;169(2). doi: 10.1530/REP-24-0286. Print 2024 Feb 1.

Abstract

IN BRIEF

Ovine conceptuses highly express phospholipase inhibitory genes just before the conceptus attachment period. Phospholipase inhibitors could synergistically work with the interferon pathway on the endometrium.

ABSTRACT

In mammals, various molecules are involved in the biochemical interaction between the conceptus and endometrium for pregnancy recognition and establishment. In ruminants, interferon tau (IFNT) is the pregnancy recognition factor; however, IFNT alone does not explain corpus luteum maintenance. Although data on factors expressed during implantation have been accumulated, we hypothesized that the conceptus produces additional uncharacterized molecules during the period of conceptus attachment. This study aimed to identify new conceptus secretory proteins involved in the biochemical interaction between the conceptus and endometrium in sheep. We analyzed RNA-sequence data of ovine conceptuses from pregnant animals on days 12, 14, 15, 16, 17, 19, 20 and 21. To identify novel secretory proteins, we focused on highly expressed but uncharacterized genes and performed in silico protein function analysis, identifying genes encoding phospholipase inhibitory proteins expressed on days 14 and 15. Recombinant proteins from these genes were produced, and the effects on cultured bovine endometrial epithelial cells (EECs) and stromal cells (STRs) were analyzed by RNA-sequence analysis. Differentially expressed gene (DEG) analysis demonstrated that the recombinant protein treatment upregulated 31 genes and downregulated 4 genes in EECs; it also upregulated 398 genes and downregulated 66 genes in STRs, including implantation-related genes, such as ISG15, OAS1X, OAS1Y, PARP9, PARP14, MX1 and PTGS2. Gene set enrichment analysis revealed that DEGs were enriched in several implantation-related pathways, including ISG15 antivirus mechanisms. These results suggest that, in addition to numerous characterized molecules, phospholipase inhibitory protein is a new candidate molecule in enabling biochemical communication between the conceptus and endometrium.

摘要

简而言之

绵羊胚胎在着床期前高度表达磷脂酶抑制基因。磷脂酶抑制剂可能与子宫内膜上的干扰素途径协同作用。

摘要

在哺乳动物中,各种分子参与胚胎与子宫内膜之间的生化相互作用以实现妊娠识别和建立。在反刍动物中,干扰素 tau(IFNT)是妊娠识别因子;然而,仅IFNT并不能解释黄体的维持。尽管已经积累了关于着床期间表达的因子的数据,但我们假设胚胎在着床期会产生其他未被表征的分子。本研究旨在鉴定参与绵羊胚胎与子宫内膜生化相互作用的新的胚胎分泌蛋白。我们分析了怀孕动物在第12、14、15、16、17、19、20和21天的绵羊胚胎的RNA序列数据。为了鉴定新的分泌蛋白,我们关注高表达但未被表征的基因,并进行了蛋白质功能的计算机分析,确定了在第14和15天表达的编码磷脂酶抑制蛋白的基因。制备了这些基因的重组蛋白,并通过RNA序列分析来分析其对培养的牛子宫内膜上皮细胞(EECs)和基质细胞(STRs)的影响。差异表达基因(DEG)分析表明,重组蛋白处理在EECs中上调了31个基因,下调了4个基因;在STRs中上调了398个基因,下调了66个基因,包括与着床相关的基因,如ISG15、OAS1X、OAS1Y、PARP9、PARP14、MX1和PTGS2。基因集富集分析表明,DEGs富集在几个与着床相关的途径中,包括ISG15抗病毒机制。这些结果表明,除了许多已被表征的分子外,磷脂酶抑制蛋白是胚胎与子宫内膜之间生化通讯的新候选分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f09/11935640/1e6ffe6e5061/REP-24-0286fig1.jpg

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