Structural and functional analysis of a tandem repeat galacturonic acid-binding lectin from the sea hare Aplysia californica

被引:1
|
作者
Silva-Becerril, Areli [1 ]
Quintero-Martinez, Adrian [1 ]
Hernandez-Santoyo, Alejandra [1 ]
机构
[1] Univ Nacl Autonoma Mexico, Inst Quim, Coyoacan 04510, Mexico
关键词
Aplysia californica; Carbohydrate-binding protein; Carbohydrate recognition domain; D-galacturonic acid; Innate immunity; Invertebrate lectin; Marine mollusks; Tandem-repeat lectin; New lectin family; SEQUENCE ALIGNMENT; PURIFICATION; DIVERSITY; INNATE; SERVER;
D O I
10.1016/j.fsi.2022.108513
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
A D-galacturonic acid-specific lectin, named AcL, was purified from the sea hare Aplysia californica by galactose-agarose affinity chromatography. AcL has a molecular mass of 27.5 kDa determined by MALDI-TOF mass spectrometry. This lectin shows a good affinity for D-galacturonic acid and a lower affinity for galactosides: raffinose, melibiose, alpha and beta-lactose, and D-galactose. We determined the amino acid sequence of AcL by trypsin digestion and subsequent peptide analysis by mass spectrometry, resulting in a 238 amino acid protein with a theoretical molecular mass of 26.4 kDa. The difference between the theoretical and experimental values can be attributed to post-translational modifications. Thiol-disulfide quantification discerned five disulfide bonds and three free cysteines. The structure of Acl is mainly comprised of beta sheets, determined by circular dichroism, and predicted with AlphaFold. Theoretical models depict three nearly identical tandem domains consisting of two beta sheets each. From docking analysis, we identified AcL glycan-binding sites as multiple conserved motifs in each domain. Furthermore, phylogenetic analysis based on its structure and sequence showed that AcL and its closest homologues (GalULs) form a clear monophyletic group, distinct from other glycan-binding proteins with a jelly-roll fold: lectins of types F and H. GalULs possess four conserved sequence regions that distinguish them and are either ligand-binding motifs or stabilizing network hubs. We suggest that this new family should be referred to as GalUL or D-type, following the traditional naming of lectins; D standing for depilans, the epithet for the species (Aplysia depilans) from which a lectin of this family was first isolated and described.
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