Title of article :
Yolk hydrolases in the eggs of Anticarsia gemmatalis hubner (Lepidoptera: Noctuidae): A role for inorganic polyphosphate towards yolk mobilization
Author/Authors :
Oliveira، نويسنده , , Danielle M.P. and Gomes، نويسنده , , Fabio M. and Carvalho، نويسنده , , Danielle B. and Ramos، نويسنده , , Isabela and Carneiro، نويسنده , , Alan B. and Silva-Neto، نويسنده , , Mario A.C. and de Souza، نويسنده , , Wanderley and Lima، نويسنده , , Ana P.C.A. and Miranda، نويسنده , , Kildare and Machado، نويسنده , , Ednildo A.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Abstract :
Despite being the main insect pest on soybean crops in the Americas, very few studies have approached the general biology of the lepidopteran Anticarsia gemmatalis and there is a paucity of studies with embryo formation and yolk mobilization in this species. In the present work, we identified an acid phosphatase activity in the eggs of A. gemmatalis (agAP) that we further characterized by means of biochemistry and cell biology experiments. By testing several candidate substrates, this enzyme proved chiefly active with phosphotyrosine; in vitro assays suggested a link between agAP activity and dephosphorylation of egg yolk phosphotyrosine. We also detected strong activity with endogenous and exogenous short chain polyphosphates (PolyP), which are polymers of phosphate residues involved in a number of physiological processes. Both agAP activity and PolyP were shown to initially concentrate in small vesicles clearly distinct from typically larger yolk granules, suggesting subcellular compartmentalization. As PolyP has been implicated in inhibition of yolk proteases, we performed in vitro enzymatic assays with a cysteine protease to test whether it would be inhibited by PolyP. This cysteine protease is prominent in Anticarsia egg homogenates. Accordingly, short chain PolyP was a potent inhibitor of cysteine protease. We thereby suggest that PolyP hydrolysis by agAP is a triggering mechanism of yolk mobilization in A. gemmatalis.
Keywords :
Pest insect , acid phosphatase , protease , Yolk degradation , Polyphosphate
Journal title :
Journal of Insect Physiology
Journal title :
Journal of Insect Physiology