Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P04141 (granulocyte-macrophage colony-stimulating factor)
6,790 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Two mouse-specific polyepitope protein antigens comprising different combinations of sequences chosen from the mouse fertility antigens zona pellucida proteins 1 and 3 (ZP1 and ZP3), prolactin, proliferin, granulocyte-macrophage colony-stimulating factor (GM-CSF), sperm protein SP56 and T-helper cell-stimulating epitopes were produced in bacterial protein expression systems. The recombinant proteins were fused to maltose binding protein (MBP) and used to immunize female mice; their effects on fertility were assessed. Controls were immunized with either MBP only or phosphate buffered saline (PBS). One antigen construct (MBP-polyepitope B), containing mouse-specific epitopes for ZP1, ZP3, SP56 and proliferin, significantly reduced the fertility of female BALB/c mice. Fertility in this group was decreased by > 40% compared with the MBP control and the number of viable embryos was decreased by > 60%. This construct will now be used to produce the antigen in a recombinant murine cytomegalovirus for assessment as a potential mouse-specific anti-fertility vaccine for use in the control of mice in the field.
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PMID:Mouse-specific immunocontraceptive polyepitope vaccines. 1222 Jan 59

Mouse-specific immunocontraceptive peptides have been identified in mouse proteins with key roles in reproduction from sequence comparisons to other species and tested for efficacy as immunocontraceptive antigens. Peptides were derived from granulocyte-macrophage colony-stimulating factor (GMCSF), the placental 27 kDa heat-shock protein (HSP), leukemia inhibitory factor receptor (LIFR), oviduct glycoprotein (OGP), proliferin (PLF), prolactin (PRL), sperm protein SP56 and mouse zona pellucida subunits 1 and 3 (ZP1, ZP3). Fertility of female BALB/c mice was reduced after immunization with several peptides either conjugated to a carrier protein or in the form of recombinant polyepitopes. The most effective conjugated peptides (SP56, GMCSF and PRL) induced peptide-specific serum antibodies and reduced fertility by 50%. Fertility of mice was also reduced after immunization with polyepitope antigens containing up to five different peptides fused to maltose-binding protein, but antibodies were not produced against all the encoded peptides. The most effective polyepitope antigen (containing PLF, SP56, ZP1 and ZP3 peptides) reduced fertility by 50% but induced only SP56 and ZP1 antibodies. We demonstrate that lack of antibody response to a given peptide epitope (ZP3) can be overcome if repeated copies are used in the polyepitope antigen construct, but the effect varies between mouse strains. We conclude that infertility induced in mice with a range of peptide-based vaccines is dependent on antigen formulation and genetic factors but does not necessarily correlate with peptide-specific antibody levels. In light of these results, strategies to improve the efficacy of peptide-based antifertility vaccines are discussed.
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PMID:Development of mouse-specific contraceptive vaccines: infertility in mice immunized with peptide and polyepitope antigens. 1545 34