4.7 Article

Identification and functional characterization of a novel antistasin/WAP-like serine protease inhibitor from the tropical sea cucumber, Stichopus monotuberculatus

期刊

FISH & SHELLFISH IMMUNOLOGY
卷 59, 期 -, 页码 203-212

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.fsi.2016.10.038

关键词

Antistasin/WAP-like serine protease; inhibitor; Stichopus monotuberculatus; Antibacterial activity; Innate immune

资金

  1. Strategic Priority Research Program of the Chinese Academy of Sciences [XDA13020205]
  2. Key Projects in the National Science & Technology Pillar Program during the 12th Five-year Plan Period [2012BAD18B03]
  3. Guangdong Province Program [2012B091100272, 2012B061500012, 2014B030301064]
  4. Excellent Young Teachers Culturing Projects of Foshan University [FSYQ201417]

向作者/读者索取更多资源

A novel antistasin/WAP-like serine protease inhibitor, named as StmAW-SPI, was identified from sea cucumber (Stichopus monotuberculatus) and functionally characterized in this study. The full-length cDNA of StmAW-SPI is 1917 bp in length with a 72 bp 5'-untranslated region (UTR), a 294 bp 3'-UTR and a 1551 bp open reading frame (ORF) encoding a protein of 516 amino acids with a deduced molecular weight of 54.56 kDa. The StmAW-SPI protein has 5-fold internal repeats (IRs) of antistasin domain and 6 fold IRs of WAP domain. For the gene structure, StmAW-SPI contains 10 exons separated by 9 introns. The StmAW-SPI mRNA expression pattern was determined using quantitative real-time PCR. The highest level of StmAW-SPI was found in the intestine, followed by coelomocytes, gonad, body wall and respiratory tree. The StmAW-SPI expressions were significantly up-regulated after polyriboinosinic polyribocytidylic acid [Poly (I:C)] or lipopolysaccharides (LPS) challenge in in vitro experiments performed in primary coelomocytes. In addition, the serine protease inhibitory activity and bacterial protease inhibitory activity of StmAW-SPI were examined, and the antibacterial activity was also demonstrated in this study. Our study, as a whole, suggested that StmAW-SPI might play a critical role in the innate immune defense of sea cucumber against microbial infections, by not only inactivating the serine protease but also inhibiting the growth of pathogens. (C) 2016 Elsevier Ltd. All rights reserved.

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