scholarly article | Q13442814 |
P50 | author | Andrew J. Childs | Q45929365 |
Rosemary Bayne | Q56425096 | ||
P2093 | author name string | R A Anderson | |
C Collins | |||
K Duffin | |||
P2860 | cites work | Revisiting oocyte-somatic cell interactions: in search of novel intrafollicular predictors and regulators of oocyte developmental competence | Q37091054 |
Antagonism of the testis- and ovary-determining pathways during ovotestis development in mice | Q37187812 | ||
Development of the mammalian gonad: The fate of the supporting cell lineage | Q37204561 | ||
Identification of Tgf beta1i4 as a downstream target of Foxc1. | Q40270530 | ||
Forkhead l2 is expressed in the ovary and represses the promoter activity of the steroidogenic acute regulatory gene | Q44827015 | ||
Activin signals via SMAD2/3 between germ and somatic cells in the human fetal ovary and regulates kit ligand expression | Q46827741 | ||
Developmental changes in expression of myeloid cell leukemia-1 in human germ cells during oogenesis and early folliculogenesis. | Q48857038 | ||
Postnatal regulation of germ cells by activin: the establishment of the initial follicle pool | Q50645688 | ||
Germ cell proliferation and apoptosis in the developing human ovary | Q50661922 | ||
Genetic mapping of the autosomal region involved in XX sex-reversal and horn development in goats | Q51005645 | ||
Loss of Wnt4 and Foxl2 leads to female-to-male sex reversal extending to germ cells. | Q51740200 | ||
Etiology of ovarian failure in blepharophimosis ptosis epicanthus inversus syndrome: FOXL2 is a conserved, early-acting gene in vertebrate ovarian development. | Q52104040 | ||
Number of germ cells and somatic cells in human fetal ovaries during the first weeks after sex differentiation. | Q53657709 | ||
Premature ovarian failure | Q56565614 | ||
Familial Blepharophimosis: An Uncommon Marker of Ovarian Dysgenesis | Q64899302 | ||
Initiation of oogenesis in the human fetal ovary: ultrastructural and squash preparation study | Q69561929 | ||
An association among blepharophimosis, resistant ovary syndrome, and true premature menopause | Q70408491 | ||
A novel 30 bp deletion in the FOXL2 gene in a phenotypically normal woman with primary amenorrhoea: case report | Q80809772 | ||
The putative forkhead transcription factor FOXL2 is mutated in blepharophimosis/ptosis/epicanthus inversus syndrome | Q24290819 | ||
Expression of activin subunits and receptors in the developing human ovary: activin A promotes germ cell survival and proliferation before primordial follicle formation | Q24305929 | ||
Identification of FOXC1 as a TGF-beta1 responsive gene and its involvement in negative regulation of cell growth | Q24314589 | ||
Increased expression of the FIGLA transcription factor is associated with primordial follicle formation in the human fetal ovary | Q24321286 | ||
FOXL2 and BPES: mutational hotspots, phenotypic variability, and revision of the genotype-phenotype correlation | Q24610524 | ||
FoxL2 and Smad3 coordinately regulate follistatin gene transcription | Q24655444 | ||
A preliminary report on the implication of RT-PCR detection of DAZ, RBMY1, USP9Y and Protamine-2 mRNA in testicular biopsy samples from azoospermic men | Q28204155 | ||
Spectrum of FOXL2 gene mutations in blepharophimosis-ptosis-epicanthus inversus (BPES) families demonstrates a genotype--phenotype correlation | Q28208124 | ||
Formation of ovarian follicles during fetal development in sheep | Q28208506 | ||
The murine winged-helix transcription factor Foxl2 is required for granulosa cell differentiation and ovary maintenance | Q28508707 | ||
The gonadotropin releasing hormone (GnRH) receptor activating sequence (GRAS) is a composite regulatory element that interacts with multiple classes of transcription factors including Smads, AP-1 and a forkhead DNA binding protein | Q28513030 | ||
Foxl2 disruption causes mouse ovarian failure by pervasive blockage of follicle development | Q28588131 | ||
Foxl2 is required for commitment to ovary differentiation | Q28588667 | ||
Forkhead transcription factors: key players in development and metabolism | Q29618804 | ||
Conserved and divergent patterns of expression of DAZL, VASA and OCT4 in the germ cells of the human fetal ovary and testis | Q33310993 | ||
Foxl2 functions in sex determination and histogenesis throughout mouse ovary development | Q33470721 | ||
Growth and paracrine factors regulating follicular formation and cellular function | Q34017664 | ||
Oogenesis in human fetal ovaries maintained in organ culture | Q34035297 | ||
Regulation of primordial germ cell development in the mouse | Q34075594 | ||
A 11.7-kb deletion triggers intersexuality and polledness in goats | Q34103569 | ||
Structure, evolution and expression of the FOXL2 transcription unit | Q34285014 | ||
The transcriptional role of Smads and FAST (FoxH1) in TGFbeta and activin signalling | Q34307626 | ||
Transcriptional regulation of early oogenesis: in search of masters. | Q34448592 | ||
Differentiation of mammalian embryonic gonad | Q34689325 | ||
Gene expression analysis of human fetal ovarian primordial follicle formation | Q34955992 | ||
Genetic dissection of mammalian fertility pathways | Q35024487 | ||
Expression studies of the PIS-regulated genes suggest different mechanisms of sex determination within mammals. | Q35611198 | ||
The possible role of meiotic pairing anomalies in the atresia of human fetal oocytes | Q36449560 | ||
Forkhead transcription factors regulate mosquito reproduction | Q36739677 | ||
P433 | issue | 12 | |
P304 | page(s) | 771-777 | |
P577 | publication date | 2009-08-25 | |
P1433 | published in | Molecular Human Reproduction | Q15761794 |
P1476 | title | The forkhead transcription factor FOXL2 is expressed in somatic cells of the human ovary prior to follicle formation | |
P478 | volume | 15 |
Q21090799 | A new model of development of the mammalian ovary and follicles |
Q41596119 | Association of novel polymorphisms of forkhead box L2 and growth differentiation factor-9 genes with egg production traits in local Chinese Dagu hens |
Q34243004 | BMP signaling in the human fetal ovary is developmentally regulated and promotes primordial germ cell apoptosis |
Q35819253 | Cooperative Effects of FOXL2 with the Members of TGF-β Superfamily on FSH Receptor mRNA Expression and Granulosa Cell Proliferation from Hen Prehierarchical Follicles |
Q37106535 | FOXL2 molecular status in adult granulosa cell tumors of the ovary: A study of primary and metastatic cases |
Q37458762 | FOXL2, GATA4, and SMAD3 co-operatively modulate gene expression, cell viability and apoptosis in ovarian granulosa cell tumor cells |
Q37906151 | Gonadal development and tumor formation at the crossroads of male and female sex determination. |
Q36181272 | LIN28 is selectively expressed by primordial and pre-meiotic germ cells in the human fetal ovary. |
Q64063556 | Morphometric analyses and gene expression related to germ cells, gonadal ridge epithelial-like cells and granulosa cells during development of the bovine fetal ovary |
Q38981589 | Ovarian regeneration: The potential for stem cell contribution in the postnatal ovary to sustained endocrine function |
Q38044171 | Steroid hormones and the development of reproductive organs |
Q47133127 | Temporal expression pattern of genes during the period of sex differentiation in human embryonic gonads. |
Q28278102 | The ageing ovary and uterus: new biological insights |
Q38171615 | The role of FOXL2 in the pathogenesis of adult ovarian granulosa cell tumours. |
Search more.