Dissecting membrane insertion of mitochondrial beta-barrel proteins

Autor(en): Kutik, Stephan
Stojanovski, Diana
Becker, Lars
Becker, Thomas
Meinecke, Michael
Krueger, Vivien
Prinz, Claudia
Meisinger, Chris
Guiard, Bernard
Wagner, Richard 
Pfanner, Nikolaus
Wiedemann, Nils
Stichwörter: ASSEMBLY MACHINERY; Biochemistry & Molecular Biology; BIOGENESIS; Cell Biology; CHANNEL; DOMAIN; ESSENTIAL COMPONENT; IMPORT; MUTATIONS; OUTER-MEMBRANE; TOM COMPLEX; TRANSLOCASE
Erscheinungsdatum: 2008
Herausgeber: CELL PRESS
Enthalten in: CELL
Band: 132
Ausgabe: 6
Startseite: 1011
Seitenende: 1024
Zusammenfassung: 
Communication of mitochondria with the rest of the cell requires beta-barrel proteins of the outer membrane. All beta-barrel proteins are synthesized as precursors in the cytosol and imported into mitochondria by the general translocase TOM and the sorting machinery SAM. The SAM complex contains two proteins essential for cell viability, the channel-forming Sam50 and Sam35. We have identified the sorting signal of mitochondrial beta-barrel proteins that is universal in all eukaryotic kingdoms. The beta-signal initiates precursor insertion into a hydrophilic, proteinaceous membrane environment by forming a ternary complex with Sam35 and Sam50. Sam35 recognizes the beta-signal, inducing a major conductance increase of the Sam50 channel. Subsequent precursor release from SAM is coupled to integration into the lipid phase. We propose that a two-stage mechanism of signal-driven insertion into a membrane protein complex and subsequent integration into the lipid phase may represent a general mechanism for biogenesis of beta-barrel proteins.
ISSN: 00928674
DOI: 10.1016/j.cell.2008.01.028

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