Correlation Engine 2.0
Clear Search sequence regions


  • antithrombin (1)
  • aprotinin (1)
  • blood diseases (1)
  • casein (1)
  • Cc3 (8)
  • chelators (1)
  • factors (3)
  • fibrin (1)
  • fibrinogen (1)
  • FII (1)
  • FVII (1)
  • FVIII (1)
  • g- protein (1)
  • heparin (1)
  • integrin (1)
  • ion (1)
  • missouri (1)
  • plasmas (2)
  • platelet (2)
  • proteinases (1)
  • receptors (1)
  • spase (8)
  • thrombin (1)
  • Sizes of these terms reflect their relevance to your search.

    Cc3 -SPase (30 kDa-proteinase; pI 5.98) was isolated from Cerastes cerastes venom. Its sequence of 271 residues yielded from LC-MALDI-TOF showed high degrees of homology when aligned with other proteinases. Cc3 -SPase cleaved natural and synthetic proteins such as casein and fibrinogen leaving fibrin clots unaffected. Cc3 -SPase was fully abolished by ion chelators, whereas aprotinin, antithrombin III (Sigma Aldrich, Saint-Louis, Missouri, USA), and heparin were ineffective. Affinity of Cc3 -SPase to benzamidine indicated the presence of an aspartate residue in the catalytic site as confirmed by three-dimensional structure consisting of 14 β-strands and four α-helices. Molecular mechanisms revealed that Cc3 -SPase is capable of promoting dysfunctional platelet aggregation via two signaling pathways mediated by the G-coupled protein receptors and αIIbβ3 integrin. Cc3 -SPase is involved in both extrinsic/intrinsic coagulation pathways in deficient plasmas by replacing defective/lacking factors FII, FVII, and FVIII but not FX. Cc3 -SPase could substitute missing factors in blood diseases related to plasma factor deficiencies. © 2018 Wiley Periodicals, Inc.

    Citation

    Fatah Chérifi, Samah Saoud, Fatima Laraba-Djebari. Molecular modeling, biochemical characterization, and pharmacological properties of Cc3 -SPase: A platelet-aggregating thrombin-like enzyme purified from Cerastes cerastes venom. Journal of biochemical and molecular toxicology. 2018 Jul 06:e22165


    PMID: 29979475

    View Full Text