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Identification of a potent antidiuretic factor acting on beetle Malpighian tubules.


ABSTRACT: Beetles, like other insects, depend on diuretic and antidiuretic hormones to control water balance. We have isolated, using head extracts from the beetle Tenebrio molitor, a peptide that strongly inhibits fluid secretion by the Malpighian tubules of this insect. This antidiuretic factor (ADF) appears to elicit its effect via cGMP as a second messenger but does not stimulate NO production. It has primary structure: Val-Val-Asn-Thr-Pro-Gly-His-Ala-Val-Ser-Tyr-His-Val-Tyr-OH. The ADF inhibits tubule secretion with high potency: the EC(50) is around 10 fM. It bears no significant resemblance to other biologically active neuropeptides. To our knowledge this is the only endogenous insect ADF acting on Malpighian tubules to be sequenced, and the first coleopteran (beetle) antidiuretic factor fully characterized to date.

SUBMITTER: Eigenheer RA 

PROVIDER: S-EPMC117518 | biostudies-literature | 2002 Jan

REPOSITORIES: biostudies-literature

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Identification of a potent antidiuretic factor acting on beetle Malpighian tubules.

Eigenheer Richard A RA   Nicolson Susan W SW   Schegg Kathleen M KM   Hull J Joe JJ   Schooley David A DA  

Proceedings of the National Academy of Sciences of the United States of America 20011226 1


Beetles, like other insects, depend on diuretic and antidiuretic hormones to control water balance. We have isolated, using head extracts from the beetle Tenebrio molitor, a peptide that strongly inhibits fluid secretion by the Malpighian tubules of this insect. This antidiuretic factor (ADF) appears to elicit its effect via cGMP as a second messenger but does not stimulate NO production. It has primary structure: Val-Val-Asn-Thr-Pro-Gly-His-Ala-Val-Ser-Tyr-His-Val-Tyr-OH. The ADF inhibits tubul  ...[more]

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