Functional Conservation of Clock Output Signaling between Flies and Intertidal Crabs

Author:

Beckwith Esteban J.1,Lelito Katherine R.2,Hsu Yun-Wei A.3,Medina Billie M.3,Shafer Orie2,Ceriani M. Fernanda1,de la Iglesia Horacio O.3

Affiliation:

1. Laboratorio de Genética del Comportamiento,Fundación Instituto Leloir, IIB-BA CONICET, Buenos Aires, Argentina

2. Molecular, Cellular, and Developmental Biology Department, University of Michigan, Ann Arbor, MI, USA

3. Department of Biology, University of Washington, Seattle, WA, USA

Abstract

Intertidal species have both circadian and circatidal clocks. Although the behavioral evidence for these oscillators is more than 5 decades old, virtually nothing is known about their molecular clockwork. Pigment-dispersing hormones (PDHs) were originally described in crustaceans. Their insect homologs, pigment-dispersing factors (PDFs), have a prominent role as clock output and synchronizing signals released from clock neurons. We show that gene duplication in crabs has led to two PDH genes (β -pdh-I and β -pdh-II). Phylogenetically, β -pdh-I is more closely related to insect pdf than to β -pdh-II, and we hypothesized that β-PDH-I may represent a canonical clock output signal. Accordingly, β-PDH-I expression in the brain of the intertidal crab Cancer productus is similar to that of PDF in Drosophila melanogaster, and neurons that express PDH-I also show CYCLE-like immunoreactivity. Using D. melanogaster pdf-null mutants ( pdf01) as a heterologous system, we show that β -pdh-I is indistinguishable from pdf in its ability to rescue the mutant arrhythmic phenotype, but β -pdh-II fails to restore the wild-type phenotype. Application of the three peptides to explanted brains shows that PDF and β-PDH-I are equally effective in inducing the signal transduction cascade of the PDF receptor, but β-PDH-II fails to induce a normal cascade. Our results represent the first functional characterization of a putative molecular clock output in an intertidal species and may provide a critical step towards the characterization of molecular components of biological clocks in intertidal organisms.

Publisher

SAGE Publications

Subject

Physiology (medical),Physiology

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