Smurf Downregulates Echinoid in the Amnioserosa To Regulate Drosophila Dorsal Closure

Author:

Lin Chiao-Ming11,Xu Jiajun21,Yang Wen-Ting1,Wang Chao2,Li Yu-Chiao1,Cheng Lien-Chieh1,Zhang Lei2,Hsu Jui-Chou13

Affiliation:

1. Institute of Molecular Medicine, Department of Life Science, National Tsing Hua University, Hsinchu 30013, Taiwan

2. State Key Laboratory of Cell Biology, CAS Center for Excellence in Molecular Cell Science, Innovation Center for Cell Signaling Network, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Shanghai 200031, People’s Republic of China

3. Department of Biological Science and Technology, National Chiao Tung University, Hsinchu 30010, Taiwan

Abstract

Abstract Drosophila dorsal closure is a morphogenetic movement that involves flanking epidermal cells, assembling actomyosin cables, and migrating dorsally over the underlying amnioserosa to seal at the dorsal midline. Echinoid (Ed)—a cell adhesion molecule of adherens junctions (AJs)—participates in several developmental processes. The disappearance of Ed from the amnioserosa is required to define the epidermal leading edge for actomyosin cable assembly and coordinated cell migration. However, the mechanism by which Ed is cleared from amnioserosa is unknown. Here, we show that Ed is cleared in amnioserosa by both transcriptional and post-translational mechanisms. First, Ed mRNA transcription was repressed in amnioserosa prior to the onset of dorsal closure. Second, the ubiquitin ligase Smurf downregulated pretranslated Ed by binding to the PPXY motif of Ed. During dorsal closure, Smurf colocalized with Ed at AJs, and Smurf overexpression prematurely degraded Ed in the amnioserosa. Conversely, Ed persisted in the amnioserosa of Smurf mutant embryos, which, in turn, affected actomyosin cable formation. Together, our results demonstrate that transcriptional repression of Ed followed by Smurf-mediated downregulation of pretranslated Ed in amnioserosa regulates the establishment of a taut leading edge during dorsal closure.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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