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Published on: October 16, 2017
Cloning and characterization of a novel mannose-binding protein of Acanthamoeba
Marco Garate1, Zhiyi Cao, Erik Bateman
1Department of Ophthalmology, Center for Vision Research and the New England Eye Center, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.
Abstract:
Acanthamoebae produce a painful, blinding infection of the cornea. The mannose-binding protein (MBP) of Acanthamoeba is thought to play a key role in the pathogenesis of the infection by mediating the adhesion of parasites to the host cells. We describe here the isolation and molecular cloning of Acanthamoeba MBP. The MBP was isolated by chromatography on the mannose affinity gel. Gel filtration experiments revealed that the Acanthamoeba lectin is a approximately 400-kDa protein that is constituted of multiple 130-kDa subunits. Cloning and sequencing experiments indicated that the Acanthamoeba MBP gene is composed of 6 exons and 5 introns that span 3.6 kb of the amoeba genome and that MBP cDNA codes for a precursor protein of 833 amino acids. That the cloned cDNA encodes authentic MBP was demonstrated by showing that: (i). recombinant MBP possesses mannose binding activity, and (ii). polyclonal antibodies prepared against Acanthamoeba MBP bound to the recombinant protein. Sequence analysis revealed that the MBP contains a large N-terminal extracellular domain, a transmembrane domain, and a short C-terminal cytoplasmic domain. Despite extensive BLAST searches using the MBP sequence, no significant matches were retrieved. The most striking feature of the Acanthamoeba MBP sequence is the presence of a cysteine-rich region containing 14 CXCXC motifs within the extracellular domain. In summary, we have isolated, cloned, and characterized a novel MBP from Acanthamoeba. Because the presence of antibodies to MBP in tears provides protection against infection, the availability of the MBP cDNA sequence and rMBP should help develop: (i). a tear-based test to identify individuals who are at risk of developing the keratitis and (ii). strategies to immunize high-risk individuals.
Insights
Researchers isolated and cloned the mannose-binding protein (MBP) from Acanthamoeba, a key factor in corneal infections. This discovery aids in developing diagnostic tests and potential immunizations for Acanthamoeba keratitis.
Area of Science:
- Microbiology
- Molecular Biology
- Immunology
Background:
- Acanthamoeba infections cause painful, blinding keratitis.
- Mannose-binding protein (MBP) is implicated in Acanthamoeba pathogenesis via host cell adhesion.
Purpose of the Study:
- To isolate and molecularly clone the Acanthamoeba mannose-binding protein (MBP).
- To characterize the cloned MBP and assess its role in Acanthamoeba infections.
Main Methods:
- Isolation of MBP using mannose affinity chromatography.
- Molecular cloning and sequencing of the Acanthamoeba MBP gene.
- Characterization of recombinant MBP for mannose-binding activity.
Main Results:
- Acanthamoeba MBP is a ~400 kDa protein composed of 130 kDa subunits.
- The MBP gene spans 3.6 kb with 6 exons and 5 introns.
- Recombinant MBP exhibited mannose-binding activity, confirming its identity.
Conclusions:
- A novel MBP from Acanthamoeba was successfully isolated and cloned.
- The MBP sequence contains a unique cysteine-rich extracellular domain.
- The findings facilitate diagnostic tests for keratitis risk and vaccine development.

