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Tim50 Maintains the Permeability Barrier of the Mitochondrial Inner Membrane
202
Citations
23
References
2006
Year
Mitochondrial Inner MembraneMolecular BiologyCellular PhysiologyMembrane TransportMitochondrial StructureMolecular PhysiologyBiochemistryMitochondrial DynamicTranslocation PoreMembrane BiologyProtein TransportCell BiologySignal TransductionMitochondrial FunctionNatural SciencesPhysiologyTim23 ChannelPermeability BarrierMedicineOrganelle Dynamic
Transport of metabolites across the mitochondrial inner membrane is highly selective, thereby maintaining the electrochemical proton gradient that functions as the main driving force for cellular adenosine triphosphate synthesis. Mitochondria import many preproteins via the presequence translocase of the inner membrane. However, the reconstituted Tim23 protein constitutes a pore remaining mainly in its open form, a state that would be deleterious in organello. We found that the intermembrane space domain of Tim50 induced the Tim23 channel to close. Presequences overcame this effect and activated the channel for translocation. Thus, the hydrophilic cis domain of Tim50 maintains the permeability barrier of mitochondria by closing the translocation pore in a presequence-regulated manner.
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