| Literature DB >> 18973687 |
Takayo Ota1, Haruka Asahina, Se-Hyung Park, Qing Huang, Takashi Minegishi, Nelly Auersperg, Peter C K Leung.
Abstract
BACKGROUND: HOX cofactors enhance HOX binding affinities and specificities and increase HOX's unique functional activities. The expression and the regulation of HOX cofactors in human ovaries are unknown.Entities:
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Year: 2008 PMID: 18973687 PMCID: PMC2585084 DOI: 10.1186/1477-7827-6-49
Source DB: PubMed Journal: Reprod Biol Endocrinol ISSN: 1477-7827 Impact factor: 5.211
Figure 1Expression of HOX cofactors in immortalized human granulosa (SVOG) cells in culture. (a) mRNA levels of PBX1, PBX2 and MEIS1. control, no cDNA. (b). Levels of PBX1, PBX2 and MEIS1/2 as shown by immunofluorescence microscopy. The staining of nuclei with Hoechst is shown in the right column. (scale bar = 20 μm).
Figure 2Immunohistochemical staining for PBX1, PBX2 and MEIS1/2 in human ovaries. (A, B, C, J) PBX1, (D, E, F, K) PBX2 and (G, H, I, L) MEIS1/2. (A, D, G): primordial follicles. (B, E, H): primary follicles. (C, F, I): secondary follicles. (J, K, L): preovulatory follicles. Figure 2E contains both primordial and primary follicles, and Figure 2I contains both primordial and secondary follicles (scale bars: A,B,D,E,G,H = 9 μm, C,F,I = 40 μm, J,K,L = 350 μm).
Expression of HOX cofactors in granulosa cells during follicular development
| negative | positive | Strongly positive | total | |
| primordial | 1 (6%) | 9 (50%) | 8 (44%) | 18 |
| primary | 1 (2.5%) | 1 (2.5%) | 41 (95%) | 43 |
| secondary | 0 (0%) | 0 (0%) | 2 (100%) | 2 |
| multi, Graffian | 4 (100%) | 0 (0%) | 0 (0%) | 4 |
| primordial | 4 (21%) | 15 (79%) | 0 (0%) | 19 |
| primary | 3 (10%) | 20 (67%) | 7 (23%) | 30 |
| secondary, multi, Graffian | 0 (0%) | 5 (83%) | 1 (17%) | 6 |
| primordial | 8 (36%) | 12 (55%) | 2 (9%) | 22 |
| primary | 6 (18%) | 27 (79%) | 1 (3%) | 34 |
| secondary | 0 (0%) | 0 (0%) | 4 (100%) | 4 |
| multi, Graffian | 5 (100%) | 0 (0%) | 0 (0%) | 5 |
Figure 3Effects of FSH and GDF-9 on PBX2 in SVOG cells. The cells were treated with FSH (100 ng/ml) or/and GDF-9 (50 or 100 mg/ml). For co-treatment, cells were pre-treated with FSH for 4 hr and then treated with GDF-9 for 24 hr.
Figure 4HOXA7 and PBX2 bind as a heterodimer to the Pbx sequence, but not to EMX2. EMSA analysis was performed with 32P-labeled oligonucleotides containing the (A) Pbx consensus sequence and (B) EMX2 consensus sequence. Supershift assays were also performed with antibodies to HOXA7 and PBX2. Lanes are designated as follows: lane 1, negative control using excess unlabeled cold probe (100×) with nuclear extract; lane 2, 32P-labeled probe without nuclear extract, showing the migration of free probe in absence of nuclear extract; lane 3, 32P-labeled probe with nuclear extract; lane 4, supershift reaction with 32P-labeled probe, nuclear extract and anti-PBX2 antibody; lane 5, supershift reaction with 32P-labeled probe, nuclear extract and anti-HOXA7 antibody; lane 6, supershift reaction with 32P-labeled probe, nuclear extract, anti-Pbx2 and anti-HOXA7 antibodies; lane 7, 32P-labeled probe without nuclear extract but with anti-PBX2 and anti-HOXA7 antibodies. Abbreviation: n.s., non-specific complex.