Sep 2026· Developmental and Comparative Immunology· Vol 184, pp.
105731
· 0 citations· 37 references
Medicine
TL;DR
Findings support BmSerpin-7 as a dual negative regulator of PPO activation and bacteria-induced AMP production, thereby providing insights into the regulation of immune response in silkworm.
Abstract
The prophenoloxidase (PPO) activation pathway and the Toll-mediated antimicrobial peptide (AMP) synthesis pathway constitute critical immune responses within the insect immune system. The activation of these pathways is driven by extracellular serine protease cascades, a process counterbalanced by the negative regulation of serpins. In this study, we identified a typical serpin, BmSerpin-7, and characterized its function in the silkworm, Bombyx mori. BmSerpin-7 expression was up-regulated in the hemocytes but down-regulated in the fat body after Micrococcus luteus and Yersinia pseudotuberculosis challenge. Melanization, phenoloxidase (PO) activity and the activation of PPO were markedly suppressed by the recombinant BmSerpin-7. Meanwhile, the antibacterial activity of the hemolymph and bacteria-induced expression of AMP genes, including gloverin-2, gloverin-3, cecropin-D, and cecropin-E, were also remarkably decreased. Furthermore, based on sequence homology and established serpin-protease relationships in Manduca sexta, B. mori hemolymph protease 1 (BmHP1) and hemolymph protease 6 (BmHP6) are proposed as potential proteases involved in BmSerpin-7-mediated immune regulation. Together, our findings support BmSerpin-7 as a dual negative regulator of PPO activation and bacteria-induced AMP production, thereby providing insights into the regulation of immune response in silkworm.
Peptidoglycan recognition proteins (PGRPs) are a family of pattern recognition receptors that play critical roles in detecting bacterial infections and activating immune responses in insects. Although twelve PGRPs have been identified in the silkworm Bombyx mori, the functions of most long-type PGRPs, including BmPGRP-...
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