In Silico Physicochemical Characterization of Fusion Proteins from Emerging Amazonian Arboviruses

Crislaine S Leal1, Carlos Alberto M Carvalho1

  • 1Graduate Program in Parasite Biology in the Amazon, Center for Biological and Health Sciences, University of Pará State, Belém 66095-662, PA, Brazil.

PubMed

Insights

Physicochemical characterization of viral fusion proteins from Mayaro, Saint Louis encephalitis, and Oropouche viruses reveals distinct properties. Mayaro virus E1 and Saint Louis encephalitis virus E proteins share more similarities than Oropouche virus Gc protein.

Area of Science:

  • Virology
  • Structural Biology
  • Bioinformatics

Background:

  • Mayaro (MAYV), Saint Louis encephalitis (SLEV), and Oropouche (OROV) viruses are significant arboviruses causing febrile illnesses in the Amazon.
  • Their class II fusion proteins (E1, E, and Gc) are crucial for host cell entry but structurally underexplored.

Purpose of the Study:

  • To conduct an in silico physicochemical characterization of MAYV E1, SLEV E, and OROV Gc fusion proteins.
  • To elucidate their structural properties, potential modifications, and antigenic characteristics.

Main Methods:

  • Obtained amino acid sequences from NCBI.
  • Utilized web servers (ClustalO, Protcalc, Predator, Phyre2, etc.) for sequence identity, residual properties, secondary structure prediction, post-translational modification identification, and 3D structure modeling.
  • Analyzed sequence identities, residue profiles, secondary structures, and antigenic propensities.

Main Results:

  • Sequence identities: MAYV/SLEV (20.44%), SLEV/OROV (18.82%), MAYV/OROV (13.70%).
  • Residue properties: MAYV E1 and SLEV E are predominantly non-polar; OROV Gc is predominantly polar.
  • Secondary structures: MAYV E1 and SLEV E have more beta-sheets than alpha-helices; OROV Gc has more alpha-helices than beta-sheets.
  • Post-translational modifications: Potential for PKC phosphorylation (MAYV E1), N-myristoylation (SLEV E), and CKII phosphorylation (OROV Gc).
  • Antigenic propensities are higher in the N-terminus half of all three proteins.
  • 3D structures revealed three distinctive domains.

Conclusions:

  • MAYV E1 and SLEV E proteins exhibit more shared physicochemical characteristics compared to OROV Gc.
  • Despite differences, all three proteins belong to the class II viral fusion protein family.