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X-Ray Crystallography to Study the Oligomeric State Transition of the Thermotoga maritima M42 Aminopeptidase TmPep1050
Published on: May 13, 2020
Oma1, a novel membrane-bound metallopeptidase in mitochondria with activities overlapping with the m-AAA protease
Michael Kaser1, Melanie Kambacheld, Brigitte Kisters-Woike
1Institut für Genetik, Universität zu Köln, Zülpicher Strasse 47, 50674 Köln, Germany.
Abstract:
The integrity of the inner membrane of mitochondria is maintained by a membrane-embedded quality control system that ensures the removal of misfolded membrane proteins. Two ATP-dependent AAA proteases with catalytic sites at opposite membrane surfaces are key components of this proteolytic system. Here we describe the identification of a novel conserved metallopeptidase that exerts activities overlapping with the m-AAA protease and was therefore termed Oma1. Both peptidases are integral parts of the inner membrane and mediate the proteolytic breakdown of a misfolded derivative of the polytopic inner membrane protein Oxa1. The m-AAA protease cleaves off the matrix-exposed C-terminal domain of Oxa1 and processively degrades its transmembrane domain. In the absence of the m-AAA protease, proteolysis of Oxa1 is mediated in an ATP-independent manner by Oma1 and a yet unknown peptidase resulting in the accumulation of N- and C-terminal proteolytic fragments. Oma1 exposes its proteolytic center to the matrix side; however, mapping of Oma1 cleavage sites reveals clipping of Oxa1 in loop regions at both membrane surfaces. These results identify Oma1 as a novel component of the quality control system in the inner membrane of mitochondria. Proteins homologous to Oma1 are present in higher eukaryotic cells, eubacteria and archaebacteria, suggesting that Oma1 is the founding member of a conserved family of membrane-embedded metallopeptidases.
Insights
Researchers discovered Oma1, a novel metallopeptidase crucial for mitochondrial inner membrane quality control. Oma1 works alongside the m-AAA protease to degrade misfolded proteins, ensuring mitochondrial integrity.
Area of Science:
- Mitochondrial biology
- Protein quality control
- Protease function
Background:
- Mitochondrial inner membrane integrity relies on quality control systems for removing misfolded proteins.
- ATP-dependent AAA proteases are key players in this proteolytic system.
Purpose of the Study:
- To identify novel components of the mitochondrial inner membrane quality control system.
- To characterize the function of a newly identified metallopeptidase, Oma1.
Main Methods:
- Identification and characterization of the metallopeptidase Oma1.
- Analysis of proteolytic breakdown of the inner membrane protein Oxa1 in the presence and absence of m-AAA protease.
- Mapping of Oma1 cleavage sites on Oxa1.
Main Results:
- Oma1, a novel conserved metallopeptidase, was identified with activities overlapping the m-AAA protease.
- Both Oma1 and m-AAA protease degrade misfolded Oxa1, a polytopic inner membrane protein.
- Oma1 mediates ATP-independent proteolysis of Oxa1, cleaving it at both membrane surfaces.
Conclusions:
- Oma1 is a novel component of the mitochondrial inner membrane quality control system.
- Oma1 represents the founding member of a conserved family of membrane-embedded metallopeptidases found across diverse organisms.
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