4.5 Article

Role of Antheraea pernyi serpin 12 in prophenoloxidase activation and immune responses

出版社

WILEY
DOI: 10.1002/arch.21435

关键词

AMPs; innate immunity; microbial infection; serpin; toll pathway

资金

  1. Earmarked Fund for Modern Agro-industry Technology Research System [CARS-22-SYZ10]
  2. National Natural Science Foundation of China [31301715, 31472147, 31402018]
  3. Anhui Provincial Natural Science Foundation of China [1308085QC60]
  4. Sericulture Biotechnology Innovation Team 410 [2013xkdt-05]
  5. PhD Programs in Biochemistry and Molecular Biology [xk2013042]

向作者/读者索取更多资源

Serine protease inhibitors play a key role in the immune system of invertebrates by controlling proteolytic cascades. Besides its importance, the knowledge on immune functions of serpins in most of insects is fragmentary. In the present study, we identified serpin-12 from Antheraea pernyi encoding a predicted 402 amino acid residue protein (Apserpin-12). We expressed the recombinant protein in Escherichia coli and the purified protein was used for the synthesis of rabbit anti-Apserpin-12 polyclonal antibodies and functional studies. Quantitative real-time ploymerase chain reaction (qRT-PCR) analysis revealed that the knock-down of Apserpin-12 enhanced the prophenoloxidase (PPO) cascade stimulated by Micrococcus luteus in hemolymph, whereas addition of recombinant Apserpin-12 protein along with same elicitor led to down-regulate PPO activation. Following different microbial challenge (E. coli, Beauveria bassiana, M. Luteus, and nuclear polyhedrosis virus), the expression of Apserpin-12 mRNA was induced significantly. Furthermore, the Apserpin-12 double-stranded RNA administration elicited the expression of antimicrobial peptides, while the treatment with recombinant protein suppressed their expression. Tissue profile of Apserpin-12 indicated that it is expressed in all examined tissues, that is, hemolymph, malpighian tubules, midgut, silk gland, integument, and fat body with variation in their transcript levels. We concluded that Apserpin-12 may regulate PPO activation and inhibit the production of antimicrobial peptides in A. pernyi, suggesting important role in its immune system.

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