A novel diuretic hormone receptor in<i>Drosophila</i>: evidence for conservation of CGRP signaling

Erik C. Johnson(Washington University in St. Louis), Orie T. Shafer(Washington University in St. Louis), Jennifer S. Trigg(Washington University in St. Louis), Jae H. Park(University of Tennessee at Knoxville), David A. Schooley(University of Nevada, Reno), Julian A. T. Dow(University of Glasgow), Paul H. Taghert(Washington University in St. Louis)
Journal of Experimental Biology
March 21, 2005
Cited by 261Open Access
Full Text

Abstract

The Drosophila orphan G protein-coupled receptor encoded by CG17415 is related to members of the calcitonin receptor-like receptor (CLR) family. In mammals, signaling from CLR receptors depend on accessory proteins, namely the receptor activity modifying proteins (RAMPs) and receptor component protein (RCP). We tested the possibility that this Drosophila CLR might also require accessory proteins for proper function and we report that co-expression of the mammalian or Drosophila RCP or mammalian RAMPs permitted neuropeptide diuretic hormone 31 (DH31) signaling from the CG17415 receptor. RAMP subtype expression did not alter the pharmacological profile of CG17415 activation. CG17415 antibodies revealed expression within the principal cells of Malpighian tubules, further implicating DH31 as a ligand for this receptor. Immunostaining in the brain revealed an unexpected convergence of two distinct DH signaling pathways. In both the larval and adult brain, most DH31 receptor-expressing neurons produce the neuropeptide corazonin, and also express the CRFR-related receptor CG8422, which is a receptor for the neuropeptide diuretic hormone 44 (DH44). There is extensive convergence of CRF and CGRP signaling within vertebrates and we report a striking parallel in Drosophila involving DH44 (CRF) and DH31 (CGRP). Therefore, it appears that both the molecular details as well as the functional organization of CGRP signaling have been conserved.


Related Papers

No related papers found

Powered by citation graph analysis