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Preimplantation embryos cooperate with oviductal cells to produce embryotrophic inactivated complement-3b.
- Source :
-
Endocrinology [Endocrinology] 2008 Mar; Vol. 149 (3), pp. 1268-76. Date of Electronic Publication: 2007 Nov 26. - Publication Year :
- 2008
-
Abstract
- Human oviductal epithelial (OE) cells produce complement protein 3 (C3) and its derivatives, C3b and inactivated complement-3b (iC3b). Among them, iC3b is the most potent embryotrophic molecule. We studied the production of iC3b in the oviductal cell/embryo culture system. In the immune system, C3 convertase converts C3 into C3b, and the conversion of C3b to iC3b requires factor I (fI) and its cofactors, such as factor H or membrane cofactor protein. Human oviductal epithelium and OE cells expressed mRNA and protein of the components of C3 convertase, including C2, C4, factor B, and factor D. The OE cell-conditioned medium contained active C3 convertase activity that was suppressed by C3 convertase inhibitor, H17 in a dose and time-dependent manner. Although the oviductal epithelium and OE cells produced fI, the production of its cofactor, factor H required for the conversion of C3b to iC3b, was weak. Thus, OE cell-conditioned medium was inefficient in producing iC3b from exogenous C3b. On the contrary, mouse embryos facilitated such conversion to iC3b, which was taken up by the embryos, resulting in the formation of more blastocysts of larger size. The facilitatory activity was mediated by complement receptor 1-related gene/protein Y (Crry) with known membrane cofactor protein activity on the trophectoderm of the embryos as anti-Crry antibody inhibited the conversion and embryotrophic activity of C3b in the presence of fI. In conclusion, human oviduct possesses C3 convertase activity converting C3 to C3b, and Crry of the preimplantation embryos may be involved in the production of embryotrophic iC3b on the surface of the embryos.
- Subjects :
- Animals
Cells, Cultured
Complement C3-C5 Convertases metabolism
Complement Factor D metabolism
Complement Factor H metabolism
Complement Factor I metabolism
Female
Humans
Mice
Mice, Inbred ICR
Receptors, Complement metabolism
Receptors, Complement 3b
Blastocyst metabolism
Cell Communication physiology
Complement C3b metabolism
Fallopian Tubes metabolism
Fallopian Tubes pathology
Subjects
Details
- Language :
- English
- ISSN :
- 0013-7227
- Volume :
- 149
- Issue :
- 3
- Database :
- MEDLINE
- Journal :
- Endocrinology
- Publication Type :
- Academic Journal
- Accession number :
- 18039777
- Full Text :
- https://doi.org/10.1210/en.2007-1277