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Publication Date:
June 2011
ISSN:
1437-4315
DOI:
10.1515/bc.2011.065

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Novel neutrophil inhibitory factor homologue in the buccal gland secretion of Lampetra japonica

Zhuang Xue1, a / Jie Bai1, a / Jing Sun1, a / Yu Wu1 / Shui Yan Yu1 / Ren Yong Guo1 / Xin Liu1 / 1

1Institute of Marine Genomics and Proteomics, Liaoning Normal University, Dalian 116029, China

aThese authors contributed equally to this work.

Corresponding author

Citation Information: Biological Chemistry. Volume 392, Issue 7, Pages 609–616, ISSN (Online) 1437-4315, ISSN (Print) 1431-6730, DOI: 10.1515/bc.2011.065, June 2011

Publication History:
Received:
2011-01-03
Accepted:
2011-04-11
Published Online:
2011-06-18

Abstract

To identify the functional gene fragment, a neutrophil inhibitory factor (NIF) like protein was found in the buccal gland of Lampetra japonica, suggesting that this related lamprey protein represents a novel class of integrin receptor antagonists. The recombinant Lampetra japonica-NIF like (rLj-NIF) was identified by SDS-PAGE and purified by using His·Bind affinity chromatography. Effect of rLj-NIF on neutrophil migration suggested that rLj-NIF can act as a neutrophil inhibitory factor. Besides that, oxidative burst activity of neutriphil was tested by flow cytometry using dihydrorhodamine (DHR123) as a fluorogenic substrate, and the data suggested that the mean fluorescence intensity significantly decreased compared with positive controls (p<0.01). All above results indicated that rLj-NIF could also prevent the binding of β2 integrins to the surface of PMN and its FITC-labeled monoclonal antibodies (p<0.05). These data suggest that Lampetra japonica-NIF like protein is secreted by the stage of the parasite at the site of attachment. rLj-NIF plays an essential role in physiological reaction of neutrophil by a novel class of β2 integrin receptor antagonists. The activity of immunosuppressant of L. japonica-NIF could have potential medicinal value in anti-inflammation and therapy of autoimmune diseases.

Keywords: β2 integrin; lamprey; migration; neutrophil inhibitory factor; oxidative burst

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