Article ID Journal Published Year Pages File Type
2064629 Toxicon 2014 5 Pages PDF
Abstract

•We identified amino acids highly conserved between bacterial GDPDs and LlPLD1.•Amino acids residues W256 and D259 in the GDPD domain are important for interaction of LlPLD1 with sphingomyelin.•Mutations W256S and D259G decreased enzymatic and hemolytic activities of LlPLD1.

It is known that the family of phospholipases D (PLD) from spiders of the genus Loxosceles, hydrolyze the substrates sphingomyelin and lisophosphatidylcholine, by their catalytic acid–base action which involves two histidines. However, little is known about the amino acids that participate on substrate recognition. In this study we identified highly conserved amino acids of the glycerophosphoryl diester phosphodiesterase (GDPD) domain of recombinant LlPLD1, which interact with the substrate sphingomyelin. The mutation of W256 to serine and D259 to glycine decreased significantly the sphingomyelinase and hemolytic activity when compared to wild type LlPLD1. The interaction of LlPLD1 with sphingomyelin was also strongly reduced in both mutants LlPLD1-W256S and LlPLD1-D259G. The results show the importance of these residues in the interaction of the protein with its substrate sphingomyelin in cell membranes.

Related Topics
Life Sciences Biochemistry, Genetics and Molecular Biology Biochemistry, Genetics and Molecular Biology (General)
Authors
, , , ,