Uhlenhaut Nina Henriette, Treier Mathias
Developmental Biology Unit, European Molecular Biology Laboratory, Meyerhofstrasse 1, 69117 Heidelberg, Germany.
Mol Genet Metab. 2006 Jul;88(3):225-34. doi: 10.1016/j.ymgme.2006.03.005. Epub 2006 May 2.
Foxl2 is a forkhead transcription factor essential for proper reproductive function in females. Human patients carrying mutations in the FOXL2 gene display blepharophimosis/ptosis/epicanthus inversus syndrome (BPES), an autosomal dominant disease associated with eyelid defects and premature ovarian failure in females. Recently, animal models for BPES have been developed that in combination with a catalogue of human FOXL2 mutations provide further insight into its molecular function. Mice homozygous mutant for Foxl2 display craniofacial malformations and female infertility. The analysis of the murine phenotype has revealed that Foxl2 is required for granulosa cell function. These ovarian somatic cells surround and nourish the oocyte and play an important role in follicle formation and activation. Mutations upstream of FOXL2 in humans, not affecting the coding sequence itself, have also been shown to cause BPES, which points to the existence of a distant regulatory element necessary for proper gene expression. The same regulatory sequences may be deleted in the goat polled intersex syndrome (PIS), in which FoxL2 expression is severely reduced. Sequence comparison of FoxL2 from several vertebrate species has shown that it is a highly conserved gene involved in ovary development. Thus, the detailed understanding of Foxl2 function and regulation and the identification of its transcriptional targets may open new avenues for the treatment of female infertility in the future.
Foxl2是一种叉头转录因子,对雌性动物正常的生殖功能至关重要。携带FOXL2基因突变的人类患者表现出睑裂狭小/上睑下垂/内眦赘皮综合征(BPES),这是一种常染色体显性疾病,与女性眼睑缺陷和卵巢早衰有关。最近,已经开发出BPES动物模型,这些模型与人类FOXL2突变目录相结合,能进一步深入了解其分子功能。Foxl2基因纯合突变的小鼠表现出颅面畸形和雌性不育。对小鼠表型的分析表明,Foxl2是颗粒细胞功能所必需的。这些卵巢体细胞围绕并滋养卵母细胞,在卵泡形成和激活中发挥重要作用。人类中FOXL2上游的突变,虽不影响编码序列本身,但也已被证明会导致BPES,这表明存在一个对正确基因表达必不可少的远距离调控元件。在山羊两性畸形综合征(PIS)中,相同的调控序列可能缺失,其中FoxL2表达严重降低。对几种脊椎动物物种的FoxL2进行序列比较表明,它是一个参与卵巢发育的高度保守基因。因此,对Foxl2功能和调控的详细了解以及对其转录靶点的鉴定,可能为未来治疗女性不孕症开辟新途径。