Coordination of mitochondrial and cellular dynamics by the actin-based motor Myo19

Author:

Majstrowicz Katarzyna1ORCID,Honnert Ulrike1,Nikolaus Petra1,Schwarz Vera1ORCID,Oeding Stefanie J.1ORCID,Hemkemeyer Sandra A.1,Bähler Martin1ORCID

Affiliation:

1. Institute of Molecular Cell Biology, Westfalian Wilhelms University Münster, 48149 Münster, Germany

Abstract

ABSTRACT Myosin XIX (Myo19) is an actin-based motor that competes with adaptors of microtubule-based motors for binding to the outer mitochondrial transmembrane proteins Miro1 and Miro2 (collectively Miro, also known as RhoT1 and RhoT2, respectively). Here, we investigate which mitochondrial and cellular processes depend on the coordination of Myo19 and microtubule-based motor activities. To this end, we created Myo19-deficient HEK293T cells. Mitochondria in these cells were not properly fragmented at mitosis and were partitioned asymmetrically to daughter cells. Respiratory functions of mitochondria were impaired and ROS generation was enhanced. On a cellular level, cell proliferation, cytokinesis and cell–matrix adhesion were negatively affected. On a molecular level, Myo19 regulates focal adhesions in interphase, and mitochondrial fusion and mitochondrially associated levels of fission protein Drp1 and adaptor proteins dynactin and TRAK1 at prometaphase. These alterations were due to a disturbed coordination of Myo19 and microtubule-based motor activities by Miro.

Funder

Deutsche Forschungsgemeinschaft

University of Münster

Publisher

The Company of Biologists

Subject

Cell Biology

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