Danti Laura, Lundin Karolina, Nedeczey-Ruzsák Petra, Tuuri Timo, Tapanainen Juha S
Department of Obstetrics and Gynaecology, University of Helsinki and Helsinki University Hospital, P.O. Box 140, Helsinki, 00029 HUS, Finland.
Department of Medicine Huddinge (MedH), Biosciences and Nutrition Unit, Karolinska Institutet, Huddinge, Sweden.
Reprod Biol Endocrinol. 2025 Mar 18;23(1):44. doi: 10.1186/s12958-025-01377-0.
Forkhead box L2 (FOXL2) is a transcription factor from the forkhead box family primarily expressed in the pituitary, ovaries, and eyelids. Human mutations in FOXL2 cause blepharophimosis, ptosis, epicanthus and inversus syndrome (BPES), which can be associated with primary ovarian insufficiency, and is indirectly linked with differences of sex development (DSD). Animal studies have shown the crucial role that FOXL2 plays in the development, function, and maintenance of the ovary as well as in sex determination. However, the specific role of FOXL2 in early human somatic cell ovarian development is largely unknown.
In this study, we utilised CRISPR/Cas9 genome activation and a previously published in-house 14-day gonadal differentiation protocol to study the role of FOXL2.
Our results demonstrate that FOXL2 downregulates coelomic epithelial markers GATA4 and LHX9, female gonadal markers RSPO1 and WNT4, and male gonadal markers SOX9, NR0B1 and DHH. The differentially expressed genes were mostly associated with Kyoto encyclopaedia of genes and genomes (KEGG) pathways relating to cell adhesion molecules and gene ontology (GO) pathways relating to extracellular matrix and junction formation. Furthermore, a comparative analysis with existing single cell RNA sequencing data from human in vivo-derived samples elucidated that FOXL2 initiates the downregulation of coelomic epithelial genes GATA4, LHX9 and UPK3B at day 6. By day 8, the genes ARX and GATA2 are transiently upregulated by FOXL2 induction and then downregulated as the genes LGR5, TSPAN8, OSR1 and TAC1 become upregulated.
These findings suggest that FOXL2 facilitates the exit of differentiating cells from the coelomic epithelium and initially drives them towards a transitional identity before progressing into early supporting gonadal-like cells. The findings of this study significantly advance our understanding of normal gonadal development which can be used as a basis to elucidate pathological gonadal development underlying BPES.
叉头框L2(FOXL2)是叉头框家族的一种转录因子,主要在垂体、卵巢和眼睑中表达。FOXL2的人类突变会导致睑裂狭小、上睑下垂、内眦赘皮及倒向型综合征(BPES),该综合征可能与原发性卵巢功能不全相关,并且与性发育差异(DSD)存在间接联系。动物研究表明,FOXL2在卵巢的发育、功能维持以及性别决定中发挥着关键作用。然而,FOXL2在人类早期体细胞卵巢发育中的具体作用在很大程度上尚不清楚。
在本研究中,我们利用CRISPR/Cas9基因组激活技术以及先前发表的内部14天性腺分化方案来研究FOXL2的作用。
我们的结果表明,FOXL2下调体腔上皮标志物GATA4和LHX9、女性性腺标志物RSPO1和WNT4,以及男性性腺标志物SOX9、NR0B1和DHH。差异表达基因大多与京都基因与基因组百科全书(KEGG)中与细胞粘附分子相关的通路以及基因本体论(GO)中与细胞外基质和连接形成相关的通路有关。此外,与来自人类体内样本的现有单细胞RNA测序数据进行的比较分析表明,FOXL2在第6天开始下调体腔上皮基因GATA4、LHX9和UPK3B。到第8天,ARX和GATA2基因通过FOXL2诱导短暂上调,然后随着LGR5、TSPAN8、OSR1和TAC1基因上调而下调。
这些发现表明,FOXL2促进分化细胞从体腔上皮中脱离,并最初驱使它们朝着过渡身份发展,然后再发育为早期支持性腺样细胞。本研究结果显著推进了我们对正常性腺发育的理解,可为阐明BPES潜在的病理性性腺发育提供依据。