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March 30, 2015The Journal of Cell Biology86 citationsOpen Access

A formin-nucleated actin aster concentrates cell wall hydrolases for cell fusion in fission yeast

ODOmaya DudinFBFelipe O. BendezúRGRaphaël Groux

Structured PICO

P
Population
Fission yeast cells
I
Intervention
Investigation of the formin Fus1, actin, and type V myosins using structured illumination microscopy and live-cell imaging
O
Outcome
Organization of the actin fusion focus and concentration of cell wall hydrolases

In fission yeast, the formin Fus1 and type V myosins organize an actin aster that concentrates cell wall hydrolases to enable localized cell wall dissolution for cell fusion.

Abstract

Cell-cell fusion is essential for fertilization. For fusion of walled cells, the cell wall must be degraded at a precise location but maintained in surrounding regions to protect against lysis. In fission yeast cells, the formin Fus1, which nucleates linear actin filaments, is essential for this process. In this paper, we show that this formin organizes a specific actin structure-the actin fusion focus. Structured illumination microscopy and live-cell imaging of Fus1, actin, and type V myosins revealed an aster of actin filaments whose barbed ends are focalized near the plasma membrane. Focalization requires Fus1 and type V myosins and happens asynchronously always in the M cell first. Type V myosins are essential for fusion and concentrate cell wall hydrolases, but not cell wall synthases, at the fusion focus. Thus, the fusion focus focalizes cell wall dissolution within a broader cell wall synthesis zone to shift from cell growth to cell fusion.

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Cite This Study

Dudin et al. (2015) studied this question.

synapsesocial.com/papers/69dc29ec45b398e6439f53a3https://doi.org/10.1083/jcb.201411124
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