Local activation of protein kinase A inhibits morphogenetic movements during Xenopus gastrulation
Open Access
- 28 March 2003
- journal article
- research article
- Published by Wiley in Developmental Dynamics
- Vol. 227 (1) , 91-103
- https://doi.org/10.1002/dvdy.10296
Abstract
CAMP-dependent protein kinase (PKA) has various biological roles in many organisms. However, little is known about its role in the developmental processes of vertebrates. In this study, we describe the functional analysis of PKA during gastrulation movements in Xenopus laevis. Overexpression of constitutively active PKA (cPKA) in the dorsal equatorial region of the embryo affects morphogenetic movement during gastrulation. We also show that intrinsic differences of PKA activities along the dorsoventral axis are set up and the level of PKA activity on the dorsal region is lower than that on the ventral region from late blastula to gastrula stages. In addition, PKA activation in animal explants inhibits activin-induced elongation. In cPKA-injected embryos, there were no changes in the expressions of markers involved in mesoderm specification, although the correct expression domains of these genes were altered. The effects of PKA activation can be restored by coexpression of PKI, a pseudosubstrate of PKA. We further analyzed the effects of PKA activation on the behavior of migratory gastrulating cells in vitro. Expression of cPKA in head mesoderm cells causes less polarized and/or randomized migration as demonstrated by a directional cell migration assay. Finally, we show that RhoA GTPase lies downstream of PKA, affecting activin-induced convergent extension movements. Taken together, these results suggest that overexpressed PKA can modulate a pathway responsible for morphogenetic movements during Xenopus gastrulation. Developmental Dynamics 227:91–103, 2003.Keywords
This publication has 74 references indexed in Scilit:
- Dual Action of cAMP-Dependent Protein Kinase on Granulocyte MovementBiochemical and Biophysical Research Communications, 1997
- Mesodermal patterning by an inducer gradient depends on secondary cell–cell communicationCurrent Biology, 1994
- G protein-linked signaling pathways control the developmental program of dictyosteliumNeuron, 1994
- Regulation of motility and cytoskeletal organization of rat bladder carcinoma cells by cyclic AMPCell Motility, 1994
- Regulation of integrin‐mediated adhesion at focal contacts by cyclic AMPJournal of Cellular Physiology, 1993
- Transcriptional regulation by cAMPCurrent Opinion in Cell Biology, 1991
- cAMP-DEPENDENT PROTEIN KINASE: FRAMEWORK FOR A DIVERSE FAMILY OF REGULATORY ENZYMESAnnual Review of Biochemistry, 1990
- cAMP Evokes Long-Term Facilitation in Aplysia Sensory Neurons That Requires New Protein SynthesisScience, 1988
- A major developmental transition in early xenopus embryos: I. characterization and timing of cellular changes at the midblastula stageCell, 1982
- Cell locomotion in vitro by Xenopus laevis gastrula mesodermal cellsCell Motility, 1982