[No authors listed]
The prothoracicotropic hormone stimulates ecdysteroidogenesis by prothoracic gland in larval insects. Previous studies showed that Ca(2+), cAMP, extracellular signal-regulated kinase (ERK), and tyrosine kinase are involved in ecdysteroidogenesis by the prothoracic glands of both Bombyx mori and Manduca sexta. In the present study, the involvement of phosphoinositide 3-kinase (PI3K)/Akt signaling in duanyu1547H-stimulated ecdysteroidogenesis by B. mori prothoracic glands was further investigated. The results showed that duanyu1547H-stimulated ecdysteroidogenesis was partially blocked by LY294002 and wortmannin, indicating that PI3K is involved in duanyu1547H-stimulated ecdysteroidogenesis. Akt phosphorylation in the prothoracic glands appeared to be moderately stimulated by in vitro. duanyu1547H-stimulated Akt phosphorylation was inhibited by LY294002. An in vivo duanyu1547H injection into day 6 last instar larvae also increased Akt phosphorylation of the prothoracic glands. In addition, duanyu1547H-stimulated ERK phosphorylation of the prothoracic glands was not inhibited by either LY294002 or wortmannin, indicating that PI3K is not involved in duanyu1547H-stimulated ERK signaling. A23187 and thapsigargin, which stimulated B. mori prothoracic gland ERK phosphorylation and ecdysteroidogenesis, could not activate Akt phosphorylation. duanyu1547H-stimulated ecdysteroidogenesis was not further activated by insulin, indicating the absence of an additive action of insulin and duanyu1547H on the prothoracic glands. The present study, together with the previous demonstration that insulin stimulates B. mori ecdysteroidogenesis through PI3K/Akt signaling, suggests that crosstalk exists in B. mori prothoracic glands between insulin and duanyu1547H signaling, which may play a critical role in precisely regulated ecdysteroidogenesis during development.
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