| Literature DB >> 25752423 |
Lays Cordeiro Guimarães1, Caio Fernando Ramalho de Oliveira1, Sergio Marangoni2, Daniella Gorete Lourenço de Oliveira3, Maria Lígia Rodrigues Macedo4.
Abstract
This paper describes the characterization of a trypsin inhibitor from Poincianella pyramidalis seeds (PpyTI). The partial sequencing of PpyTI revealed homology to Kunitz inhibitors, clustered as a member of Family I03 in MEROPS database. PpyTI has a single polypeptide chain of 19,042 Da and presents stability at high temperatures (up to 70 °C) and a wide range of pH. In vitro assays showed that disulfide bridges have an important stabilization role of reactive site in PpyTI, a characteristic shared among several Kunitz inhibitors. Bioassays carried out with the Mediterranean flour moth (Anagasta kuehniella) revealed a significant decrease in both larval weight and survival of PpyTI-fed larvae, besides a larval stage extension. Through biochemical analysis, we demonstrated that the PpyTI insecticide effects were triggered by digestion process commitment, through the inhibition of trypsin and chymotrypsin activities, the major digestive enzymes in this species. The insecticide effects and biochemical characterization of PpyTI encourage further studies using this inhibitor for insect pest control.Entities:
Keywords: Anagasta kuehniella; Kunitz inhibitors; Pest control; Poincianella pyramidalis
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Year: 2014 PMID: 25752423 DOI: 10.1016/j.pestbp.2014.12.001
Source DB: PubMed Journal: Pestic Biochem Physiol ISSN: 0048-3575 Impact factor: 3.963