Browsing by Author "Ott, Martin"
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- Some of the metrics are blocked by yourconsent settingsEarly fate decision for mitochondrially encoded proteins by a molecular triage(2023-10-05)
;Kohler, Andreas ;Carlström, Andreas ;Nolte, Hendrik ;Kohler, Verena ;Jung, Sung-Jun ;Sridhara, Sagar ;Tatsuta, Takashi ;Berndtsson, Jens ;Langer, ThomasOtt, MartinFolding of newly synthesized proteins poses challenges for a functional proteome. Dedicated protein quality control (PQC) systems either promote the folding of nascent polypeptides at ribosomes or, if this fails, ensure their degradation. Although well studied for cytosolic protein biogenesis, it is not understood how these processes work for mitochondrially encoded proteins, key subunits of the oxidative phosphorylation (OXPHOS) system. Here, we identify dedicated hubs in proximity to mitoribosomal tunnel exits coordinating mitochondrial protein biogenesis and quality control. Conserved prohibitin (PHB)/m-AAA protease supercomplexes and the availability of assembly chaperones determine the fate of newly synthesized proteins by molecular triaging. The localization of these competing activities in the vicinity of the mitoribosomal tunnel exit allows for a prompt decision on whether newly synthesized proteins are fed into OXPHOS assembly or are degraded. - Some of the metrics are blocked by yourconsent settingsKinetic coupling of the respiratory chain with ATP synthase, but not proton gradients, drives ATP production in cristae membranes(2020)
;Toth, Alexandra ;Meyrat, Axel; ;Santiago, Ricardo; ; ;von Ballmoos, ChristophOtt, Martin - Some of the metrics are blocked by yourconsent settingsOms1 associates with cytochrome c oxidase assembly intermediates to stabilize newly synthesized Cox1(2016)
; ; ;Lorenzi, Isotta ;Hildenbeutel, Markus; ;Helbig, Christin; ;Ott, Martin; ; Fox, Thomas D.The mitochondrial cytochrome c oxidase assembles in the inner membrane from subunits of dual genetic origin. The assembly process of the enzyme is initiated by membrane insertion of the mitochondria-encoded Cox1 subunit. During complex maturation, transient assembly intermediates, consisting of structural subunits and specialized chaperone-like assembly factors, are formed. In addition, cofactors such as heme and copper have to be inserted into the nascent complex. To regulate the assembly process, the availability of Cox1 is under control of a regulatory feedback cycle in which translation of COX1 mRNA is stalled when assembly intermediates of Cox1 accumulate through inactivation of the translational activator Mss51. Here we isolate a cytochrome c oxidase assembly intermediate in preparatory scale from coa1 Delta. mutant cells, using Mss51 as bait. We demonstrate that at this stage of assembly, the complex has not yet incorporated the heme a cofactors. Using quantitative mass spectrometry, we define the protein composition of the assembly intermediate and unexpectedly identify the putative methyltransferase Oms1 as a constituent. Our analyses show that Oms1 participates in cytochrome c oxidase assembly by stabilizing newly synthesized Cox1. - Some of the metrics are blocked by yourconsent settingsOrganization of Mitochondrial Gene Expression in Two Distinct Ribosome-Containing Assemblies(2015)
;Kehrein, Kirsten ;Schilling, Ramon ;Möller-Hergt, Braulio Vargas; ; ;Lamkemeyer, Tobias ;Langer, ThomasOtt, MartinMitochondria contain their own genetic system that provides subunits of the complexes driving oxidative phosphorylation. A quarter of the mitochondrial proteome participates in gene expression, but how all these factors are orchestrated and spatially organized is currently unknown. Here, we established a method to purify and analyze native and intact complexes of mitochondrial ribosomes. Quantitative mass spectrometry revealed extensive interactions of ribosomes with factors involved in all the steps of posttranscriptional gene expression. These interactions result in large expressosome-like assemblies that we termed mitochondrial organization of gene expression (MIOREX) complexes. Superresolution microscopy revealed that most MIOREX complexes are evenly distributed throughout the mitochondrial network, whereas a subset is present as nucleoid-MIOREX complexes that unite the whole spectrum of organellar gene expression. Our work therefore provides a conceptual framework for the spatial organization of mitochondrial protein synthesis that likely developed to facilitate gene expression in the organelle. - Some of the metrics are blocked by yourconsent settingsRibosome-binding Proteins Mdm38 and Mba1 Display Overlapping Functions for Regulation of Mitochondrial Translation(Amer Soc Cell Biology, 2010)
;Bauerschmitt, Heike; ; ; ;Funes, Soledad ;Kehrein, Kirsten ;Ott, Martin; Herrmann, Johannes M.Biogenesis of respiratory chain complexes depends on the expression of mitochondrial-encoded subunits. Their synthesis occurs on membrane-associated ribosomes and is probably coupled to their membrane insertion. Defects in expression of mitochondrial translation products are among the major causes of mitochondrial disorders. Mdm38 is related to Letm1, a protein affected in Wolf-Hirschhorn syndrome patients. Like Mba1 and Oxa1, Mdm38 is an inner membrane protein that interacts with ribosomes and is involved in respiratory chain biogenesis. We find that simultaneous loss of Mba1 and Mdm38 causes severe synthetic defects in the biogenesis of cytochrome reductase and cytochrome oxidase. These defects are not due to a compromised membrane binding of ribosomes but the consequence of a mis-regulation in the synthesis of Cox1 and cytochrome b. Cox1 expression is restored by replacing Cox1-specific regulatory regions in the mRNA. We conclude, that Mdm38 and Mba1 exhibit overlapping regulatory functions in translation of selected mitochondrial mRNAs. - Some of the metrics are blocked by yourconsent settingsSpatial orchestration of mitochondrial translation and OXPHOS complex assembly(2018)
; ; ;Kehrein, Kirsten; ;Ott, Martin