Structural and functional significance of Aedes aegypti AgBR1 flavivirus immunomodulator

Ane Martinez-Castillo1, Diego Barriales2, Mikel Azkargorta3

  • 1Structure and Cell Biology of Viruses Lab, Center for Cooperative Research in Biosciences (CIC bioGUNE) - Basque Research and Technology Alliance (BRTA), Derio, Spain.

Journal of Virology
|April 24, 2025
PubMed

Insights

Mosquito salivary protein AgBR1 influences Zika virus transmission by altering host cell pathways, not by direct viral interaction. This repurposed protein

Area of Science:

  • Structural biology and virology
  • Immunology and host-pathogen interactions

Background:

  • Zika virus (ZIKV) is a mosquito-borne arbovirus transmitted by vectors like *Aedes aegypti*.
  • Mosquito saliva contains proteins, such as AgBR1 and NeSt1, with potential immunomodulatory roles in disease transmission.
  • Understanding these salivary proteins is crucial for developing strategies against mosquito-borne diseases.

Purpose of the Study:

  • To determine the crystal structure of the *Aedes aegypti* salivary protein AgBR1.
  • To investigate the functional role of AgBR1 and NeSt1 in Zika virus transmission.
  • To elucidate the mechanisms by which these proteins influence host cellular responses.

Main Methods:

  • X-ray crystallography to determine the 3D structure of AgBR1 at 1.2 Å resolution.
  • Biochemical assays to assess AgBR1's binding to chitin and its enzymatic activity.
  • Cellular studies using murine primary macrophages to evaluate the effects of AgBR1 and NeSt1 on virus entry, immune response, and proliferation pathways.

Main Results:

  • AgBR1 possesses a chitinase-like fold but lacks chitin-binding and enzymatic activity, indicating functional repurposing.
  • AgBR1 and NeSt1 alter host macrophage pathways involved in endocytosis, immune response, and cell proliferation.
  • These proteins do not directly bind to ZIKV or affect its replication, suggesting indirect modulation of transmission.

Conclusions:

  • AgBR1's function has been repurposed beyond typical chitinase activity.
  • Mosquito salivary proteins like AgBR1 and NeSt1 modulate host cellular responses to facilitate ZIKV transmission.
  • These findings provide structural and functional insights essential for developing novel interventions against mosquito-borne viral diseases.

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