Functional characterization of the M-type K15-encoded membrane protein of Kaposi's sarcoma-associated herpesvirus

Linding Wang1, Melanie M Brinkmann1, Marcel Pietrek1

  • 1Department of Virology, Hannover Medical School, Carl-Neuberg-Str. 1, D-30625 Hannover, Germany.

Insights

Despite significant sequence differences, both Kaposi's sarcoma-associated herpesvirus (KSHV) K15-M and K15-P alleles activate similar cellular signaling pathways, including Erk2, JNK1, and NF-kappaB.

Area of Science:

  • Virology
  • Molecular Biology
  • Immunology

Background:

  • Kaposi's sarcoma-associated herpesvirus (KSHV), or human herpesvirus 8, causes Kaposi's sarcoma and related diseases.
  • The KSHV K15 gene produces membrane proteins with varying transmembrane domains.
  • Two K15 alleles, K15-P (predominant) and K15-M (minor), exhibit low amino acid identity (33%) but share conserved SH2/SH3-binding motifs.

Purpose of the Study:

  • To investigate the functional differences between K15-P and K15-M alleles.
  • To determine if K15-M activates intracellular signaling pathways similar to K15-P.
  • To understand how these functional similarities might influence KSHV K15 allele spread.

Main Methods:

  • Reporter assays to measure pathway activation.
  • Gene-expression microarray studies to assess cellular inflammatory gene expression.
  • Mutagenesis of the SH2-binding motif in K15-M to assess its role in epithelial and endothelial cells.

Main Results:

  • K15-M, like K15-P, activates Erk2 and JNK1 kinases and the NF-kappaB transcription factor.
  • Both alleles induce similar expression patterns of cellular inflammatory genes.
  • Mutagenesis of the Y(490)EEV SH2-binding motif in K15-M impairs target gene activation in epithelial cells but not endothelial cells.

Conclusions:

  • K15-M and K15-P alleles trigger comparable intracellular signaling pathways.
  • The SH2-binding motif in K15-M plays a differential role in target gene activation depending on cell type.
  • Despite extensive sequence divergence, K15 alleles exhibit functional similarities in pathway activation.

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