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Identification and characterization of novel immunomodulatory bursal-derived pentapeptide-II (BPP-II). | LitMetric

AI Article Synopsis

  • The bursa of Fabricius is crucial for B lymphocyte development and has potential antitumor activity through its derived peptides, specifically the newly identified BPP-II (MTLTG).
  • BPP-II has been shown to influence a wide array of gene expressions related to immune responses, enhancing specific antibody and cytokine production in the presence of avian influenza.
  • The peptide also promotes p53 expression and inhibits tumor cell growth, suggesting its role as an important factor in connecting the immune system and cancer therapy, paving the way for new immunotherapeutic strategies.

Article Abstract

The bursa of Fabricius, the acknowledged central humoral immune organ, plays a vital role in B lymphocyte differentiation. However, there are few reports of the molecular basis of the mechanism on immune induction and potential antitumor activity of bursal-derived peptides. In this paper, a novel bursal-derived pentapeptide-II (BPP-II, MTLTG) was isolated and exerted immunomodulatory functions on antibody responses in vitro. Gene microarray analyses demonstrated that BPP-II regulated expression of 2478 genes in a mouse-derived hybridoma cell line. Immune-related gene ontology functional procedures were employed for further functional analysis. Furthermore, the majority of BPP-II-regulated pathways were associated with immune responses and tumor processes. Moreover, BPP-II exhibited immunomodulatory effects on antigen-specific immune responses in vivo, including enhancement of avian influenza virus (H9N2 subtype)-specific antibody and cytokine production and modification of T cell immunophenotypes and lymphocyte proliferation. Finally, BPP-II triggered p53 expression and stabilization and selectively inhibited tumor cell proliferation. These data identified the multifunctional factor, BPP-II, as a novel biomaterial representing an important linking between the humoral central immune system and immune induction, including antitumor. Information generated in this study elucidates further the mechanisms involved in humoral immune system and represents the potential basis of effective immunotherapeutic strategies for treating human tumors and immune improvement.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3281717PMC
http://dx.doi.org/10.1074/jbc.M111.273854DOI Listing

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