Rico Charlène, Dodelet-Devillers Aurore, Paquet Marilène, Tsoi Mayra, Lapointe Evelyne, Carmeliet Peter, Boerboom Derek
Centre de Recherche en Reproduction Animale, Université de Montréal, St-Hyacinthe, Québec, Canada.
Laboratory of Angiogenesis and Neurovascular Link, Vesalius Research Center, VIB, Leuven, Belgium Laboratory of Angiogenesis and Neurovascular Link, Department of Oncology, KU Leuven, Belgium.
Biol Reprod. 2014 Jun;90(6):135. doi: 10.1095/biolreprod.113.115634. Epub 2014 May 22.
Recent evidence has suggested that vascular endothelial growth factor A (VEGFA) is an important regulator of ovarian follicle development and survival. Both LH and FSH regulate Vegfa expression in granulosa cells and signal via the transcription factor hypoxia inducible factor 1 (HIF1). To further study the mechanism of action of HIF1 in the regulation of Vegfa, we studied Vegfa(delta/delta) mice, which lack a hypoxia response element in the Vegfa promoter. Granulosa cells from Vegfa(delta/delta) mice failed to respond to FSH or LH with an increase in Vegfa mRNA expression in vitro, and granulosa cells isolated from eCG-treated immature Vegfa(delta/delta) mice had significantly lower Vegfa mRNA levels compared to controls. However, normal Vegfa mRNA levels were detected in the granulosa cells from immature Vegfa(delta/delta) mice following hCG treatment. Vegfa(delta/delta) females produced infrequent litters, and their pups died shortly after birth. Ovaries from Vegfa(delta/delta) mice were much smaller than controls and contained few antral follicles and corpora lutea. Antral follicles numbers were decreased by nearly 50% in ovaries from Vegfa(delta/delta) mice relative to controls, and 74% of antral follicles in Vegfa(delta/delta) ovaries were atretic. Serum progesterone levels in adult Vegfa(delta/delta) females were significantly lower, apparently reflecting reduced numbers of corpora lutea. This study demonstrates for the first time the requirement of HIF1 for FSH-regulated Vegfa expression in vivo and that HIF1 acts via a single hypoxia response element in the Vegfa promoter to exert its regulatory functions. Our findings also further define the physiological role of VEGFA in follicle development.
最近的证据表明,血管内皮生长因子A(VEGFA)是卵巢卵泡发育和存活的重要调节因子。促黄体生成素(LH)和促卵泡生成素(FSH)均调节颗粒细胞中Vegfa的表达,并通过转录因子缺氧诱导因子1(HIF1)进行信号传导。为了进一步研究HIF1在Vegfa调控中的作用机制,我们研究了Vegfa(delta/delta)小鼠,其Vegfa启动子中缺乏缺氧反应元件。来自Vegfa(delta/delta)小鼠的颗粒细胞在体外对FSH或LH无反应,Vegfa mRNA表达未增加,并且与对照组相比,从经eCG处理的未成熟Vegfa(delta/delta)小鼠分离的颗粒细胞中Vegfa mRNA水平显著降低。然而,在hCG处理后,未成熟Vegfa(delta/delta)小鼠的颗粒细胞中检测到正常的Vegfa mRNA水平。Vegfa(delta/delta)雌性小鼠产仔稀少,其幼崽在出生后不久死亡。Vegfa(delta/delta)小鼠的卵巢比对照组小得多,并且含有很少的窦卵泡和黄体。与对照组相比,Vegfa(delta/delta)小鼠卵巢中的窦卵泡数量减少了近50%,Vegfa(delta/delta)卵巢中74%的窦卵泡处于闭锁状态。成年Vegfa(delta/delta)雌性小鼠的血清孕酮水平显著降低,这显然反映了黄体数量的减少。这项研究首次证明了HIF1在体内对FSH调节的Vegfa表达的必要性,并且HIF1通过Vegfa启动子中的单个缺氧反应元件发挥其调节功能。我们的发现还进一步明确了VEGFA在卵泡发育中的生理作用。