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The Identification of Sea Lamprey Pheromones Using Bioassay-Guided Fractionation
Published on: July 17, 2018
Cloning and characterization of mannose-binding lectin from lamprey (Agnathans)
Momoe Takahashi1, Daisuke Iwaki, Akiko Matsushita
1Department of Immunology, Fukushima Medical University, Fukushima, Japan.
Abstract:
The recognition of pathogens is mediated by a set of pattern recognition molecules that recognize conserved pathogen-associated molecular patterns shared by broad classes of microorganisms. Mannose-binding lectin (MBL) is one of the pattern recognition molecules and activates complement in association with MBL-associated serine protease (MASP) via the lectin pathway. Recently, an MBL-like lectin was isolated from the plasma of a urochordate, the solitary ascidian. This ascidian lectin has a carbohydrate recognition domain, but the collagen-like domain was replaced by another sequence. To elucidate the origin of MBLs, the aim of this study is to determine the structure and function of the MBL homolog in lamprey, the most primitive vertebrate. Using an N-acetylglucosamine (GlcNAc)-agarose column, MBL-like lectin (p25) was isolated from lamprey serum and cDNA cloning was conducted. From the deduced amino acid sequence this lectin has a collagenous region and a typical carbohydrate recognition domain. This lectin also binds mannose, glucose, and GlcNAc, but not galactose, indicating that it is structurally and functionally similar to the mammalian MBLs. Furthermore, it associated with lamprey MASPs, and the MBL-MASP activated lamprey C3 in fluid-phase and on the surface of pathogens. In conjunction with the phylogenetic analysis, it seems likely that the lamprey MBL is an ortholog of the mammalian MBL. Because acquired immunity seems to have been established only from jawed vertebrates onward, the lectin complement pathway in lamprey, as one of the major contributors to innate immunity, plays a pivotal role in defending the body against microorganisms.
Insights
Researchers identified a mannose-binding lectin (MBL) homolog in lamprey, a primitive vertebrate. This MBL activates the complement system, highlighting its crucial role in innate immunity against pathogens.
Area of Science:
- Immunology
- Evolutionary Biology
- Biochemistry
Background:
- Pathogen recognition relies on pattern recognition molecules interacting with conserved microbial patterns.
- Mannose-binding lectin (MBL) and MBL-associated serine proteases (MASPs) activate the complement system via the lectin pathway.
- An MBL-like lectin with a modified structure was previously found in urochordates.
Purpose of the Study:
- To investigate the structure and function of the MBL homolog in lamprey, the most primitive vertebrate.
- To elucidate the evolutionary origins of MBLs.
Main Methods:
- Isolation of MBL-like lectin (p25) from lamprey serum using N-acetylglucosamine (GlcNAc)-agarose chromatography.
- cDNA cloning and sequence analysis of the isolated lectin.
- Phylogenetic analysis to determine evolutionary relationships.
Main Results:
- Lamprey MBL (p25) possesses a collagenous region and a typical carbohydrate recognition domain.
- The lectin binds mannose, glucose, and GlcNAc, but not galactose, similar to mammalian MBLs.
- Lamprey MBL associated with lamprey MASPs, activating complement component C3 in fluid-phase and on pathogen surfaces.
Conclusions:
- The lamprey MBL is likely an ortholog of mammalian MBLs, suggesting an ancient origin of the lectin complement pathway.
- This pathway plays a significant role in innate immunity for primitive vertebrates like lampreys, predating acquired immunity.
- The findings provide insights into the evolution of the immune system.

