INF2-mediated actin polymerization at the ER stimulates mitochondrial calcium uptake, inner membrane constriction, and division

Author:

Chakrabarti Rajarshi1ORCID,Ji Wei-Ke1,Stan Radu V.1ORCID,de Juan Sanz Jaime2ORCID,Ryan Timothy A.2ORCID,Higgs Henry N.1ORCID

Affiliation:

1. Department of Biochemistry and Cell Biology, Geisel School of Medicine at Dartmouth, Hanover, NH

2. Department of Biochemistry, Weill Cornell Medical College, New York, NY

Abstract

Mitochondrial division requires division of both the inner and outer mitochondrial membranes (IMM and OMM, respectively). Interaction with endoplasmic reticulum (ER) promotes OMM division by recruitment of the dynamin Drp1, but effects on IMM division are not well characterized. We previously showed that actin polymerization through ER-bound inverted formin 2 (INF2) stimulates Drp1 recruitment in mammalian cells. Here, we show that INF2-mediated actin polymerization stimulates a second mitochondrial response independent of Drp1: a rise in mitochondrial matrix calcium through the mitochondrial calcium uniporter. ER stores supply the increased mitochondrial calcium, and the role of actin is to increase ER–mitochondria contact. Myosin IIA is also required for this mitochondrial calcium increase. Elevated mitochondrial calcium in turn activates IMM constriction in a Drp1-independent manner. IMM constriction requires electron transport chain activity. IMM division precedes OMM division. These results demonstrate that actin polymerization independently stimulates the dynamics of both membranes during mitochondrial division: IMM through increased matrix calcium, and OMM through Drp1 recruitment.

Funder

National Institutes of Health

National Institute of General Medical Sciences

Provost and Dean of Sciences at Dartmouth College

Norris Cotton Cancer Center

William Ruger Senior Fund at Dartmouth

Department of Biochemistry and Cell Biology

Publisher

Rockefeller University Press

Subject

Cell Biology

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