Literature DB >> 16458340

Kinetic and mechanistic characterization of the Sphingomyelinases D from Loxosceles intermedia spider venom.

Sonia A de Andrade1, Mario T Murakami, Danielle P Cavalcante, Raghuvir K Arni, Denise V Tambourgi.   

Abstract

Envenomation by arachnids of the genus Loxosceles leads to local dermonecrosis and serious systemic toxicity mainly induced by sphingomyelinases D (SMase D). These enzymes catalyze the hydrolysis of sphingomyelin resulting in the formation of ceramide-phosphate and choline as well as the cleavage of lysophosphatidyl choline generating the lipid mediator lysophosphatidic acid. We have, previously, cloned and expressed two functional SMase D isoforms, named P1 and P2, from Loxosceles intermedia venom and comparative protein sequence analysis revealed that they are highly homologous to SMase I from Loxosceles laeta which folds to form an (alpha/beta)8 barrel. In order to further characterize these proteins, pH dependence kinetic experiments and chemical modification of the two active SMases D isoforms were performed. We show here that the amino acids involved in catalysis and in the metal ion binding sites are strictly conserved in the SMase D isoforms from L. intermedia. However, the kinetic studies indicate that SMase P1 hydrolyzes sphingomyelin less efficiently than P2, which can be attributed to a substitution at position 203 (Pro-Leu) and local amino acid substitutions in the hydrophobic channel that could probably play a role in the substrate recognition and binding.

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Year:  2006        PMID: 16458340     DOI: 10.1016/j.toxicon.2005.12.005

Source DB:  PubMed          Journal:  Toxicon        ISSN: 0041-0101            Impact factor:   3.033


  8 in total

1.  Inhibition of CFTR Cl- channel function caused by enzymatic hydrolysis of sphingomyelin.

Authors:  Yajamana Ramu; Yanping Xu; Zhe Lu
Journal:  Proc Natl Acad Sci U S A       Date:  2007-03-30       Impact factor: 11.205

2.  Molecular evolution, functional variation, and proposed nomenclature of the gene family that includes sphingomyelinase D in sicariid spider venoms.

Authors:  Greta J Binford; Melissa R Bodner; Matthew H J Cordes; Katherine L Baldwin; Melody R Rynerson; Scott N Burns; Pamela A Zobel-Thropp
Journal:  Mol Biol Evol       Date:  2008-11-28       Impact factor: 16.240

3.  Variable Substrate Preference among Phospholipase D Toxins from Sicariid Spiders.

Authors:  Daniel M Lajoie; Sue A Roberts; Pamela A Zobel-Thropp; Jared L Delahaye; Vahe Bandarian; Greta J Binford; Matthew H J Cordes
Journal:  J Biol Chem       Date:  2015-03-09       Impact factor: 5.157

4.  Escherichia coli cytosolic glycerophosphodiester phosphodiesterase (UgpQ) requires Mg2+, Co2+, or Mn2+ for its enzyme activity.

Authors:  Noriyasu Ohshima; Saori Yamashita; Naoko Takahashi; Chizu Kuroishi; Yoshitsugu Shiro; Koji Takio
Journal:  J Bacteriol       Date:  2007-12-14       Impact factor: 3.490

5.  Adaptive evolution in the toxicity of a spider's venom enzymes.

Authors:  Aurélio Pedroso; Sergio Russo Matioli; Mario Tyago Murakami; Giselle Pidde-Queiroz; Denise V Tambourgi
Journal:  BMC Evol Biol       Date:  2015-12-21       Impact factor: 3.260

Review 6.  Biotechnological potential of Phospholipase D for Loxosceles antivenom development.

Authors:  Matías Fingermann; Adolfo Rafael de Roodt; Osvaldo Cascone; María Victoria Miranda
Journal:  Toxicon X       Date:  2020-04-18

7.  Targeting Loxosceles spider Sphingomyelinase D with small-molecule inhibitors as a potential therapeutic approach for loxoscelism.

Authors:  Priscila Hess Lopes; Mário T Murakami; Fernanda C V Portaro; Kerly Fernanda Mesquita Pasqualoto; Carmen van den Berg; Denise V Tambourgi
Journal:  J Enzyme Inhib Med Chem       Date:  2019-12       Impact factor: 5.051

Review 8.  Forty Years of the Description of Brown Spider Venom Phospholipases-D.

Authors:  Luiza Helena Gremski; Hanna Câmara da Justa; Thaís Pereira da Silva; Nayanne Louise Costacurta Polli; Bruno César Antunes; João Carlos Minozzo; Ana Carolina Martins Wille; Andrea Senff-Ribeiro; Raghuvir Krishnaswamy Arni; Silvio Sanches Veiga
Journal:  Toxins (Basel)       Date:  2020-03-06       Impact factor: 4.546

  8 in total

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