Literature DB >> 11003389

The homologue of mannose-binding lectin in the carp family Cyprinidae is expressed at high level in spleen, and the deduced primary structure predicts affinity for galactose.

L Vitved1, U Holmskov, C Koch, B Teisner, S Hansen, J Salomonsen, K Skjødt.   

Abstract

Mannose-binding lectin (MBL) participates in the innate immune system as an activator of the complement system and as an opsonin after binding to certain carbohydrate structures on microorganisms. We isolated and characterized cDNA transcripts encoding an MBL homologue from three members of the carp family Cyprinidae, the zebrafish Danio rerio, the goldfish Carassius auratus, and the carp Cyprinus carpio. The carp and zebrafish transcripts contain two polyadenylation sites and RT-PCR on mRNA from carp tissues revealed the carp transcript to be most prominently expressed in the spleen. The deduced mature proteins contain 228 or 233 amino acids with a short N-terminal segment containing a single conserved cysteine expected to form interchain disulfide bridges, a collagen domain interrupted by four amino acids between two glycine residues, a neck region predicted to form an alpha-helical coiled-coil structure, and a C-terminal carbohydrate recognition domain (CRD). Several of the structurally important residues in the CRD are conserved, but the residues known to interact with the calcium ion and hydroxyl groups of the carbohydrate ligand are different. The amino acid motif EPN, important for mannose specificity, was QPD in the Cyprinidae homologue, suggesting specificity for galactose instead. The identity between the deduced amino acid sequences is more than 90% between the carp and the goldfish and 68% and 65% between these two species, respectively, and the zebrafish. The identity with bird and mammalian MBLs ranges from 28 to 33%.

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Year:  2000        PMID: 11003389     DOI: 10.1007/s002510000232

Source DB:  PubMed          Journal:  Immunogenetics        ISSN: 0093-7711            Impact factor:   2.846


  11 in total

1.  Molecular cloning and characterization of mannose binding lectin homologue from snow trout (Schizothorax richardsonii).

Authors:  Chirag Goel; Ashoktaru Barat; Veena Pande; Prabhati Kumari Sahoo
Journal:  Protein J       Date:  2015-02       Impact factor: 2.371

2.  Sequence and expression of C-type lectin receptors in Atlantic salmon (Salmo salar).

Authors:  Kelly H Soanes; Kevin Figuereido; Robert C Richards; Neil R Mattatall; K Vanya Ewart
Journal:  Immunogenetics       Date:  2004-10-14       Impact factor: 2.846

3.  Serum levels of mannan-binding lectin in chickens prior to and during experimental infection with avian infectious bronchitis virus.

Authors:  H R Juul-Madsen; M Munch; K J Handberg; P Sørensen; A A Johnson; L R Norup; P H Jørgensen
Journal:  Poult Sci       Date:  2003-02       Impact factor: 3.352

Review 4.  Structural and functional diversity of the lectin repertoire in teleost fish: relevance to innate and adaptive immunity.

Authors:  Gerardo R Vasta; Mihai Nita-Lazar; Barbara Giomarelli; Hafiz Ahmed; Shaojun Du; Matteo Cammarata; Nicolò Parrinello; Mario A Bianchet; L Mario Amzel
Journal:  Dev Comp Immunol       Date:  2011-08-30       Impact factor: 3.636

5.  Mannose binding lectin (MBL) copy number polymorphism in Zebrafish (D. rerio) and identification of haplotypes resistant to L. anguillarum.

Authors:  Andrew N Jackson; Craig A McLure; Roger L Dawkins; Peter J Keating
Journal:  Immunogenetics       Date:  2007-10-18       Impact factor: 2.846

6.  Detection of carbohydrate terminals in the enteric parasite Enteromyxum scophthalmi (Myxozoa) and possible interactions with its fish host Psetta maxima.

Authors:  M J Redondo; N Cortadellas; O Palenzuela; P Alvarez-Pellitero
Journal:  Parasitol Res       Date:  2008-03-03       Impact factor: 2.289

7.  Evaluation of MASP1, CMPF and U.A serum levels in pre-diabetic subjects in comparison to Normal individuals for early diagnosis of subjects with pre-diabetes, a case-control study.

Authors:  Shohreh Fardipour; Soheila Moein; Saeed Hosseini Teshnizi; Mahmoud Khaytian; Durdi Qujeq
Journal:  J Diabetes Metab Disord       Date:  2020-11-21

Review 8.  Genomic view of the evolution of the complement system.

Authors:  Masaru Nonaka; Ayuko Kimura
Journal:  Immunogenetics       Date:  2006-08-09       Impact factor: 2.846

9.  C-type lectin-like domains in Fugu rubripes.

Authors:  Alex N Zelensky; Jill E Gready
Journal:  BMC Genomics       Date:  2004-08-01       Impact factor: 3.969

Review 10.  Activity of Mannose-Binding Lectin on Bacterial-Infected Chickens-A Review.

Authors:  Peter A Idowu; Adeola P Idowu; Oliver T Zishiri; Takalani J Mpofu; Edwin J A Veldhuizen; Khathutshelo A Nephawe; Bohani Mtileni
Journal:  Animals (Basel)       Date:  2021-03-12       Impact factor: 2.752

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