Runx-dependent expression of PKC is critical for cell survival in the sea urchin embryo

Author:

Dickey-Sims Carrie,Robertson Anthony J,Rupp Dawn E,McCarthy John J,Coffman James A

Abstract

Abstract Background Runx transcription factors play critical roles in the developmental control of cell fate and contribute variously as oncoproteins and tumor suppressors to leukemia and other cancers. To discover fundamental Runx functions in the cell biology of animal development, we have employed morpholino antisense-mediated knockdown of the sea urchin Runx protein SpRunt-1. Previously we showed that embryos depleted of SpRunt-1 arrest development at early gastrula stage and underexpress the conventional protein kinase C SpPKC1. Results We report here that SpRunt-1 deficiency leads to ectopic cell proliferation and extensive apoptosis. Suppression of the apoptosis by pharmacological inhibition of caspase-3 prevents the ectopic proliferation and rescues gastrulation, indicating that many of the overt defects obtained by knockdown of SpRunt-1 are secondary to the apoptosis. Inhibition or knockdown of SpPKC1 also causes apoptosis, while cell survival is rescued in SpRunt-1 morphant embryos coinjected with SpPKC1 mRNA, suggesting that the apoptosis associated with SpRunt-1 deficiency is caused by the deficit in SpPKC1 expression. Chromatin immunoprecipitation indicates that SpRunt-1 interacts physically with SpPKC1 in vivo, and cis-regulatory analysis shows that this interaction activates SpPKC1 transcription. Conclusions Our results show that Runx-dependent activation of SpPKC1 is essential for maintaining protein kinase C activity at levels conducive to cell survival during embryogenesis.

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Developmental Biology,Plant Science,General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Physiology,Ecology, Evolution, Behavior and Systematics,Structural Biology,Biotechnology

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1. Muscle Regeneration in Holothurians without the Upregulation of Muscle Genes;International Journal of Molecular Sciences;2022-12-16

2. RUNX in Invertebrates;Advances in Experimental Medicine and Biology;2017

3. Effect of PMA-induced protein kinase C activation on development and apoptosis in early zebrafish embryos;Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology;2016-12

4. An Elk transcription factor is required for Runx-dependent survival signaling in the sea urchin embryo;Developmental Biology;2016-08

5. Multiple roles for protein kinase C in gastropod embryogenesis;Cell and Tissue Research;2015-09-17

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