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鸢尾素调节牛黄体细胞中的IFNT信号通路。

Irisin Modulates IFNT Signaling in Bovine Luteal Cells.

作者信息

Silva Ana Paula da, Aires Karine de Vargas, Feltrin Suzana Rossato, de Andrade Leonardo Guedes, Cambuí Julia Vieira, Staudt Carlos Miguel, Schütz Luis Fernando, Price Christopher, Portela Valério Marques, Antoniazzi Alfredo Quites

机构信息

Graduate Program of Veterinary Medicine, Federal University of Santa Maria, Santa Maria, Rio Grande do Sul, Brazil.

Departament of Agriculture, Veterinary, and Rangeland Sciences, University of Nevada, Reno, Nevada, USA.

出版信息

Mol Reprod Dev. 2025 Aug;92(8):e70043. doi: 10.1002/mrd.70043.

Abstract

Adipokines, bioactive proteins derived from adipose tissue, serve as intermediaries between energy status and reproduction, playing pivotal roles in ovarian physiology. Among them, members of the Fibronectin Type III domain-containing the (FNDC) family, including FNDC4 and FNDC5 (the precursor of irisin), have emerged as key modulators of fertility. This study investigated the expression of FNDC4, FNDC5, and their receptors (ITGB1, ITGAV, ADGRF5) across different stages of bovine CL lifespan and evaluated irisin's effects on interferon tau (IFNT)-mediated signaling in bovine luteal cells. The relative abundance of FNDC4 and FNDC5 mRNA was significantly greater in Early II, Middle, and Late phases when compared to the Early I. The expression of ITGB1 and ADGRF5 in bovine CL was significantly greater in the Early II, Middle, and Late phases than in the Early I phase, and the abundance of ITGAV mRNA did not differ between the evaluated phases. Also, it was observed that mRNA expression of all evaluated receptors was greater in CL of nonpregnant cows on Day 18 compared to pregnant cows. In vitro experiments demonstrated that irisin treatment enhanced interferon-stimulated genes (ISGs) such as MX1 and MX2 in luteal cells, suggesting irisin potentiates IFNT signaling. Notably, irisin did not alter steroidogenic enzyme expression or affect cell viability, proliferation, or apoptosis markers, indicating its effects are specific to IFNT signaling pathways. The present study shows that the genes FNDC5 and FNDC4 are expressed in the bovine corpus luteum at different stages of development and that irisin increased ISGs expression in bovine luteal cells in vitro. The effects of irisin on CL function may be indirect, as plasma irisin increases during the postpartum negative energy balance in dairy cows. We propose that this is part of a compensatory mechanism to modulate IFNT signaling in CL cells and indirectly improve embryonic signaling mechanisms.

摘要

脂肪因子是源自脂肪组织的生物活性蛋白,作为能量状态与生殖之间的中介,在卵巢生理中发挥着关键作用。其中,含纤连蛋白III结构域家族(FNDC)的成员,包括FNDC4和FNDC5(鸢尾素的前体),已成为生育能力的关键调节因子。本研究调查了FNDC4、FNDC5及其受体(ITGB1、ITGAV、ADGRF5)在牛黄体生命周期不同阶段的表达情况,并评估了鸢尾素对牛黄体细胞中干扰素τ(IFNT)介导信号的影响。与I期早期相比,II期早期、中期和晚期FNDC4和FNDC5 mRNA的相对丰度显著更高。牛黄体中ITGB1和ADGRF5的表达在II期早期、中期和晚期显著高于I期早期,且ITGAV mRNA的丰度在各评估阶段之间没有差异。此外,观察到与妊娠母牛相比,在第18天未妊娠母牛的黄体中,所有评估受体的mRNA表达更高。体外实验表明,鸢尾素处理可增强黄体细胞中MX1和MX2等干扰素刺激基因(ISG)的表达,表明鸢尾素可增强IFNT信号。值得注意的是,鸢尾素不会改变类固醇生成酶的表达,也不会影响细胞活力、增殖或凋亡标志物,表明其作用对IFNT信号通路具有特异性。本研究表明,FNDC5和FNDC4基因在牛黄体发育的不同阶段表达,且鸢尾素在体外可增加牛黄体细胞中ISG的表达。鸢尾素对黄体功能的影响可能是间接的,因为奶牛产后负能量平衡期间血浆鸢尾素会增加。我们认为,这是调节黄体细胞中IFNT信号并间接改善胚胎信号机制的补偿机制的一部分。

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