An ancestral bacterial division system is widespread in eukaryotic mitochondria.

Proc Natl Acad Sci U S A

Centre for Comparative Genomics and Evolutionary Bioinformatics (CGEB), Department of Biochemistry and Molecular Biology, Dalhousie University, Halifax, NS, Canada, B3H 4R2;

Published: August 2015

AI Article Synopsis

  • Bacterial division starts with a contractile Z-ring made of FtsZ, regulated by three proteins: MinC, MinD, and MinE; this system is also found in plastids.
  • Unlike plastids, most mitochondria in model organisms have swapped the ancient division machinery for host-derived dynamin-related proteins, forming different contractile structures.
  • Recent findings reveal that some eukaryotes, particularly less-studied protists, still use a bacterial-like division system with FtsZ and Min proteins, suggesting this was the original state for eukaryotic mitochondria before being replaced in various lineages.

Article Abstract

Bacterial division initiates at the site of a contractile Z-ring composed of polymerized FtsZ. The location of the Z-ring in the cell is controlled by a system of three mutually antagonistic proteins, MinC, MinD, and MinE. Plastid division is also known to be dependent on homologs of these proteins, derived from the ancestral cyanobacterial endosymbiont that gave rise to plastids. In contrast, the mitochondria of model systems such as Saccharomyces cerevisiae, mammals, and Arabidopsis thaliana seem to have replaced the ancestral α-proteobacterial Min-based division machinery with host-derived dynamin-related proteins that form outer contractile rings. Here, we show that the mitochondrial division system of these model organisms is the exception, rather than the rule, for eukaryotes. We describe endosymbiont-derived, bacterial-like division systems comprising FtsZ and Min proteins in diverse less-studied eukaryote protistan lineages, including jakobid and heterolobosean excavates, a malawimonad, stramenopiles, amoebozoans, a breviate, and an apusomonad. For two of these taxa, the amoebozoan Dictyostelium purpureum and the jakobid Andalucia incarcerata, we confirm a mitochondrial localization of these proteins by their heterologous expression in Saccharomyces cerevisiae. The discovery of a proteobacterial-like division system in mitochondria of diverse eukaryotic lineages suggests that it was the ancestral feature of all eukaryotic mitochondria and has been supplanted by a host-derived system multiple times in distinct eukaryote lineages.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4547283PMC
http://dx.doi.org/10.1073/pnas.1421392112DOI Listing

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