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Isolation and structure elucidation of a novel adipokinetic hormone (Lom‐AKH‐III) from the glandular lobes of the corpus cardiacum of the migratory locust, Locusta migratoria
Author(s) -
OUDEJANS Rob C. H. M.,
KOOIMAN Frank P.,
HEERMA Wigger,
VERSLUIS Cees,
SLOTBOOM Arend J.,
BEENAKKERS Ad M. T.
Publication year - 1991
Publication title -
european journal of biochemistry
Language(s) - English
Resource type - Journals
eISSN - 1432-1033
pISSN - 0014-2956
DOI - 10.1111/j.1432-1033.1991.tb15713.x
Subject(s) - adipokinetic hormone , locust , acrididae , edman degradation , biochemistry , prohormone , biology , biosynthesis , migratory locust , amino acid , hormone , peptide sequence , peptide , schistocerca , pyroglutamic acid , enzyme , neuropeptide , orthoptera , gene , botany , ecology , receptor
A new adipokinetic hormone (named Lom‐AKH‐III) was isolated from the glandular lobes of the corpora cardiaca of Locusta migratoria . At the N‐terminus it is blocked by a 5‐oxoproline (pyroglutamic acid) residue (< Glu). After enzymatic deblocking, the amino acid sequence of the N‐terminus was partly established by automatic Edman degradation to be [< Glu]‐Leu‐Asn‐Phe‐Thr‐Pro‐. Fast‐atom‐bombardment spectrometry (FAB‐MS) revealed that the new hormone is an octapeptide, which is amidated at the C‐terminus, and has a relative molecular mass of 1072. Based on the FAB‐MS data the complete sequence is < Glu‐Leu‐Asn‐Phe‐Thr‐Pro‐Trp‐Trp‐NH 2 , which was confirmed by chemical synthesis. All characteristics from HPLC, FAB‐MS and biological activity of the natural hormone and the synthetic peptide appeared to be identical. Although the structure of this new hormone resembles that of Lom‐AKH‐I (< Glu‐Leu‐Asn‐Phe‐Thr‐Pro‐Asn‐Trp‐Gly‐Thr‐NH 2 ), its amino acid sequence points to a completely different route for its biosynthesis, involving a third prohormone. High‐[K + ]‐containing media can cause release of all three adipokinetic hormones in vitro . Interestingly, the new hormone is absent in another locust species, Schistocerca gregaria . Based on in vitro biosynthesis experiments the turnover for this hormone is very high, suggesting an important physiological function. Locusta migratoria is the first insect species in which three different adipokinetic hormones have been demonstrated.

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