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Characterization of human membrane cofactor protein (MCP; CD46) on spermatozoa
Rebecca C Riley1, Claudia Kemper, Marilyn Leung
1Department of Medicine, Division of Rheumatology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Abstract:
Membrane cofactor protein (MCP; CD46) is a complement regulator widely expressed as four isoforms that arise via alternative splicing. On human spermatozoa, MCP is expressed on the inner acrosomal membrane and alterations of spermatozoa MCP may be associated with infertility. In rodents, expression of MCP is largely restricted to the testes. MCP on human spermatozoa has a unique M(r) pattern that we have investigated. We also characterized MCP expression in mice transgenic (tg) for human MCP. Human MCP expression in the tg mice mimics the human pattern in that it is located on the inner acrosomal membrane and has a faster M(r) than MCP expressed elsewhere. Sequencing of RT-PCR products from the testis indicates that there is not a unique male reproductive tissue specific cytoplasmic tail. Instead, human spermatozoa express MCP bearing cytoplasmic tail two, which is also utilized in most other tissues and contains several signaling motifs. Further, using N-glycosidases, we demonstrate that the unique lower molecular weight of MCP on spermatozoa is secondary to a modification in the N-linked sugars. Specifically, as the spermatozoa mature, but before they reach the epididymis, the three N-linked sugars of MCP are trimmed to less complex structures. While the purpose of this deglycosylation is unknown, we propose that it is a common feature of proteins expressed on the plasma and inner acrosomal membranes of spermatozoa and hypothesize that it is a spermatozoa specific event critical for facilitating sperm-egg interactions.
Insights
Membrane cofactor protein (MCP) on human sperm has a unique, lower molecular weight due to N-linked sugar trimming. This modification, occurring before sperm reach the epididymis, may be crucial for sperm-egg interactions.
Area of Science:
- Immunology
- Reproductive Biology
- Molecular Biology
Background:
- Membrane cofactor protein (MCP; CD46) is a complement regulator with four isoforms.
- MCP is found on human spermatozoa's inner acrosomal membrane, and its alterations may link to infertility.
- Rodent MCP expression is mainly in testes, unlike the broader human expression.
Purpose of the Study:
- Investigate the unique molecular weight (M(r)) pattern of MCP on human spermatozoa.
- Characterize MCP expression in transgenic mice carrying human MCP.
- Determine the specific cytoplasmic tail and glycosylation patterns of sperm MCP.
Main Methods:
- Utilized transgenic mice for human MCP expression studies.
- Sequenced RT-PCR products from testes to identify cytoplasmic tails.
- Employed N-glycosidases to analyze N-linked sugar modifications on MCP.
Main Results:
- Human MCP expression in transgenic mice mirrored the human pattern (inner acrosomal membrane, faster M(r)).
- Human spermatozoa utilize cytoplasmic tail two, common in other tissues.
- Spermatozoa MCP's lower M(r) is due to trimmed N-linked sugars, occurring before epididymal transit.
Conclusions:
- Human spermatozoa express a unique form of MCP with modified N-linked sugars.
- This deglycosylation event is proposed to be a common feature of sperm membrane proteins.
- The modification is hypothesized to be critical for facilitating sperm-egg interactions.