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Insect neuropeptides: Discovery and application in insect management
Author(s) -
Masler Edward P.,
Kelly Thomas J.,
Menn Julius J.
Publication year - 1993
Publication title -
archives of insect biochemistry and physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.576
H-Index - 66
eISSN - 1520-6327
pISSN - 0739-4462
DOI - 10.1002/arch.940220109
Subject(s) - biology , neuropeptide , peptidomimetic , receptor , g protein coupled receptor , computational biology , biogenesis , amino acid , biochemistry , gene , peptide
New approaches to the development of insect control agents have been revealed through the molecular description of neuropeptides, their biogenesis, action, and degradation. Prerequisite to the exploitation of a neuropeptide as a lead to control agent development is a thorough understanding of the biochemistry of the neuropeptide and appreciation of its physiological impact. Reliable bioassays must be coupled with advanced biochemical and molecular genetic technologies to overcome limitations imposed by the typically low endogenous levels of individual neuropeptides. Purification, amino acid sequencing, and gene cloning provide the molecular tools necessary for studies on neuropeptide synthesis, processing, secretion, receptor binding, and inactivation. Each of these areas consists of a number of amino acid sequence‐, and enzyme‐dependent steps which may be considered as targets for the development of highly specific control agents. These agents will include antagonists and superagonists, peptidomimetics, recombinant peptides delivered through the baculovirus technology, receptor blockers, and enzyme inhibitors. © 1993 Wiley‐Liss, Inc.

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