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Updated: May 28, 2026

Preparation of the Mgm101 Recombination Protein by MBP-based Tagging Strategy
Published on: June 25, 2013
Mgm101 is a Rad52-related protein required for mitochondrial DNA recombination
MacMillan Mbantenkhu1, Xiaowen Wang1, Jonathan D Nardozzi1
1Department of Biochemistry and Molecular Biology, State University of New York Upstate Medical University, Syracuse, New York 13210.
Abstract:
Homologous recombination is a conserved molecular process that has primarily evolved for the repair of double-stranded DNA breaks and stalled replication forks. However, the recombination machinery in mitochondria is poorly understood. Here, we show that the yeast mitochondrial nucleoid protein, Mgm101, is related to the Rad52-type recombination proteins that are widespread in organisms from bacteriophage to humans. Mgm101 is required for repeat-mediated recombination and suppression of mtDNA fragmentation in vivo. It preferentially binds to single-stranded DNA and catalyzes the annealing of ssDNA precomplexed with the mitochondrial ssDNA-binding protein, Rim1. Transmission electron microscopy showed that Mgm101 forms large oligomeric rings of ∼14-fold symmetry and highly compressed helical filaments. Specific mutations affecting ring formation reduce protein stability in vitro. The data suggest that the ring structure may provide a scaffold for stabilization of Mgm101 by preventing the aggregation of the otherwise unstable monomeric conformation. Upon binding to ssDNA, Mgm101 is remobilized from the rings to form distinct nucleoprotein filaments. These studies reveal a recombination protein of likely bacteriophage origin in mitochondria and support the notion that recombination is indispensable for mtDNA integrity.
Insights
Yeast mitochondrial protein Mgm101 repairs DNA double-strand breaks and stabilizes mitochondrial DNA (mtDNA) through homologous recombination. This protein forms ring structures that are essential for its function in maintaining mtDNA integrity.
Area of Science:
- Mitochondrial biology
- Molecular genetics
- DNA repair
Background:
- Homologous recombination is crucial for DNA repair but poorly understood in mitochondria.
- Mitochondrial DNA (mtDNA) integrity is vital for cellular function.
Purpose of the Study:
- To investigate the role of yeast mitochondrial protein Mgm101 in homologous recombination and mtDNA maintenance.
- To characterize the structural and functional properties of Mgm101.
Main Methods:
- Genetic analysis in yeast
- Biochemical assays for DNA binding and annealing
- Transmission electron microscopy
Main Results:
- Mgm101 is essential for repeat-mediated recombination and preventing mtDNA fragmentation.
- Mgm101 binds single-stranded DNA and catalyzes annealing with Rim1.
- Mgm101 forms oligomeric rings and helical filaments, with ring formation stabilizing the protein.
- ssDNA binding induces Mgm101 remobilization into filaments.
Conclusions:
- Mgm101 is a Rad52-type recombination protein with a likely bacteriophage origin found in yeast mitochondria.
- Mgm101's ring structure is crucial for its stability and function in mtDNA repair and integrity.
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