Two S. pombe septation phases differ in ingression rate, septum structure, and response to F-actin loss

Author:

Ramos Mariona1ORCID,Cortés Juan Carlos G.1ORCID,Sato Mamiko2ORCID,Rincón Sergio A.1ORCID,Moreno M. Belén1ORCID,Clemente-Ramos José Ángel1ORCID,Osumi Masako23ORCID,Pérez Pilar1ORCID,Ribas Juan Carlos1ORCID

Affiliation:

1. Instituto de Biología Funcional y Genómica and Departamento de Microbiología y Genética, Consejo Superior de Investigaciones Científicas/Universidad de Salamanca, Salamanca, Spain

2. Laboratory of Electron Microscopy/Bio-imaging Center, Japan Women’s University, Bunkyo-ku, Tokyo, Japan

3. Integrated Imaging Research Support, Chiyoda-ku, Tokyo, Japan

Abstract

In fission yeast, cytokinesis requires a contractile actomyosin ring (CR) coupled to membrane and septum ingression. Septation proceeds in two phases. In anaphase B, the septum ingresses slowly. During telophase, the ingression rate increases, and the CR becomes dispensable. Here, we explore the relationship between the CR and septation by analyzing septum ultrastructure, ingression, and septation proteins in cells lacking F-actin. We show that the two phases of septation correlate with septum maturation and the response of cells to F-actin removal. During the first phase, the septum is immature and, following F-actin removal, rapidly loses the Bgs1 glucan synthase from the membrane edge and fails to ingress. During the second phase, the rapidly ingressing mature septum can maintain a Bgs1 ring and septum ingression without F-actin, but ingression becomes Cdc42 and exocyst dependent. Our results provide new insights into fungal cytokinesis and reveal the dual function of CR as an essential landmark for the concentration of Bgs1 and a contractile structure that maintains septum shape and synthesis.

Funder

Consejo Superior de Investigaciones Científicas

Ministerio de Ciencia, Innovación y Universidades

Universidad de Salamanca

European Regional Development Fund

Junta de Castilla y León government

Publisher

Rockefeller University Press

Subject

Cell Biology

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