Stress-activated MAPK signaling controls fission yeast actomyosin ring integrity by modulating formin For3 levels.

Gómez-Gil, Elisa; Martín-García, Rebeca; Vicente-Soler, Jero; Franco, Alejandro; Vázquez-Marín, Beatriz; Prieto-Ruiz, Francisco; Soto, Teresa; Pérez, Pilar et al. · Elife · 2020

basic_science · Level V

Where this comes from

Abstract

Cytokinesis, which enables the physical separation of daughter cells once mitosis has been completed, is executed in fungal and animal cells by a contractile actin- and myosin-based ring (CAR). In the fission yeast <i>Schizosaccharomyces pombe,</i> the formin For3 nucleates actin cables and also co-operates for CAR assembly during cytokinesis. Mitogen-activated protein kinases (MAPKs) regulate essential adaptive responses in eukaryotic organisms to environmental changes. We show that the stress-activated protein kinase pathway (SAPK) and its effector, MAPK Sty1, downregulates CAR assembly in <i>S. pombe</i> when its integrity becomes compromised during cytoskeletal damage and stress by reducing For3 levels. Accurate control of For3 levels by the SAPK pathway may thus represent a novel regulatory mechanism of cytokinesis outcome in response to environmental cues. Conversely, SAPK signaling favors CAR assembly and integrity in its close relative <i>Schizosaccharomyces japonicus,</i> revealing a remarkable evolutionary divergence of this response within the fission yeast clade.

Medical subject headings