Activation of interleukin 33-NFκB axis in granulosa cells during atresia and its role in disposal of atretic follicles†.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-05-09 DOI:10.1093/biolre/ioae015
Jean Wu, Colin Carlock, Kiana Tatum, Junbo Shim, Cindy Zhou, Yahuan Lou
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Abstract

It has been previously shown that the cytokine interleukin 33 is required for two processes, i.e., autophagic digestion of granulosa cells and recruitment of macrophages into atretic follicles, for full disposal of atretic follicles. Now, this study shows that activation of interleukin 33-suppression of tumorigenicity 2-Nuclear Factor ĸB (NFκB) axis in granulosa in early atretic follicles may regulate those two events. Injection of human chorionic gonadotropin has been shown to induce a transient peak of interleukin 33 expression with synchronized atresia. In this model, interleukin 33-independent expression of suppression of tumorigenicity 2 in granulosa cells was detected in early atretic follicles before macrophage invasion. The activation of NFκB pathway in ovaries was further demonstrated in vivo in Tg mice with luciferase-reporter for NFκB activation; the activation was microscopically localized to granulosa cells in early atretic follicles. Importantly, antibody blockage of interleukin 33 or interleukin 33 Knock-out (KO) (Il33-/-) not only inhibited NFκB activity in ovaries, but it also altered expression of two key genes, i.e., reduction in proinflammatory interleukin6 (IL6) expression, and a surge of potential autophagy-inhibitory mammalian target of rapamycin (mTOR) expression in atretic follicles. By contrast, apoptosis and other genes, such as interleukin1β (IL1β) were not affected. In conclusion, in parallel to apoptosis, atresia signals also trigger activation of the interleukin 33-suppression of tumorigenicity 2-NFκB pathway in granulosa, which leads to (1) down-regulated expression of mTOR that is a negative regulator of autophagy and (2) up-regulated expression of proinflammatory IL6.

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闭锁期颗粒细胞中白细胞介素33-NFκB轴的激活及其在闭锁卵泡处置中的作用
以前的研究表明,细胞因子白细胞介素33(IL33)需要两个过程,即自噬消化颗粒细胞和招募巨噬细胞进入闭锁卵泡,以完全处理闭锁卵泡。现在,这项研究表明,早期闭锁卵泡中颗粒细胞的IL33-ST2(IL33受体)-NFκB轴的激活可能会调节这两个过程。研究表明,注射hCG可诱导IL33表达的短暂峰值与同步闭锁。在该模型中,在巨噬细胞入侵之前,在早期闭锁卵泡的颗粒细胞中检测到了不依赖于IL33的ST2表达。用荧光素酶报告器检测NFκB活化情况的Tg小鼠进一步证实了卵巢中NFκB通路的活化;在显微镜下,活化定位于早期闭锁卵泡中的颗粒细胞。重要的是,抗体阻断IL33或IL33 KO(Il33-/-)不仅抑制了卵巢中NFκB的活性,还改变了两个关键基因的表达,即促炎性IL6表达的减少,以及闭锁卵泡中潜在的自噬抑制性mTOR表达的激增。相比之下,细胞凋亡和其他基因(如 IL1β)则未受影响。总之,在细胞凋亡的同时,闭锁信号也会触发颗粒细胞中IL33-ST2-NFκB通路的激活,从而导致(1)作为自噬负调控因子的mTOR表达下调,以及(2)促炎性IL6表达上调。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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