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Probing of a human proteome microarray with a recombinant pathogen protein reveals a novel mechanism by which hookworms suppress B-cell receptor signaling.


Type

Article

Change log

Authors

Tribolet, Leon 
Pickering, Darren A 
Navarro, Severine 
Doolan, Denise L 

Abstract

Na-ASP-2 is an efficacious hookworm vaccine antigen. However, despite elucidation of its crystal structure and studies addressing its immunobiology, the function of Na-ASP-2 has remained elusive. We probed a 9000-protein human proteome microarray with Na-ASP-2 and showed binding to CD79A, a component of the B-cell antigen receptor complex. Na-ASP-2 bound to human B lymphocytes ex vivo and downregulated the transcription of approximately 1000 B-cell messenger RNAs (mRNAs), while only approximately 100 mRNAs were upregulated, compared with control-treated cells. The expression of a range of molecules was affected by Na-ASP-2, including factors involved in leukocyte transendothelial migration pathways and the B-cell signaling receptor pathway. Of note was the downregulated transcription of lyn and pi3k, molecules that are known to interact with CD79A and control B-cell receptor signaling processes. Together, these results highlight a previously unknown interaction between a hookworm-secreted protein and B cells, which has implications for helminth-driven immunomodulation and vaccine development. Further, the novel use of human protein microarrays to identify host-pathogen interactions, coupled with ex vivo binding studies and subsequent analyses of global gene expression in human host cells, demonstrates a new pipeline by which to explore the molecular basis of infectious diseases.

Description

Keywords

B cell, CD79A, Na-ASP-2, Necator americanus, SCP/TAPS, antigen receptor, hookworm, host–pathogen interaction, protein microarray, Adult, Ancylostomatoidea, Animals, Antigens, Helminth, B-Lymphocytes, CD79 Antigens, Cells, Cultured, Down-Regulation, Helminth Proteins, Hookworm Infections, Host-Pathogen Interactions, Humans, Leukocytes, Mononuclear, Middle Aged, Phosphatidylinositol 3-Kinases, Pre-B Cell Receptors, Protein Array Analysis, Proteome, RNA, Messenger, Recombinant Proteins, Signal Transduction, Transcription, Genetic, Up-Regulation, src-Family Kinases

Journal Title

J Infect Dis

Conference Name

Journal ISSN

0022-1899
1537-6613

Volume Title

211

Publisher

Oxford University Press (OUP)