Binding of mitochondrial leader sequences to Tom20 assessed using a bacterial two‐hybrid system shows that hydrophobic interactions are essential and that some mutated leaders that do not bind Tom20 can still be imported
- 1 December 2006
- journal article
- Published by Wiley in Protein Science
- Vol. 15 (12), 2739-2748
- https://doi.org/10.1110/ps.062462006
Abstract
Previous studies pointed to the importance of leucine residues in the binding of mitochondrial leader sequences to Tom20, an outer membrane protein translocator that initially binds the leader during import. A bacteria two-hybrid assay was here employed to determine if this could be an alternative way to investigate the binding of leader to the receptor. Leucine to alanine and arginine to glutamine mutations were made in the leader sequence from rat liver aldehyde dehydrogenase (pALDH). The leucine residues in the C-terminal of pALDH leader were found to be essential for TOM20 binding. The hydrophobic residues of another mitochondrial leader F1beta-ATPase that were important for Tom20 binding were found at the C-terminus of the leader. In contrast, it was the leucines in the N-terminus of the leader of ornithine transcarbamylase that were essential for binding. Modeling the peptides to the structure of Tom20 showed that the hydrophobic residues from the three proteins could all fit into the hydrophobic binding pocket. The mutants of pALDH that did not bind to Tom20 were still imported in vivo in transformed HeLa cells or in vitro into isolated mitochondria. In contrast, the mutant from pOTC was imported less well ( approximately 50%) while the mutant from F1beta-ATPase was not imported to any measurable extent. Binding to Tom20 might not be a prerequisite for import; however, it also is possible that import can occur even if binding to a receptor component is poor, so long as the leader binds tightly to another component of the translocator.Keywords
This publication has 44 references indexed in Scilit:
- The protein import and assembly machinery of the mitochondrial outer membraneBiochimica et Biophysica Acta (BBA) - Bioenergetics, 2004
- Insertion of Hydrophobic Membrane Proteins into the Inner Mitochondrial Membrane—A Guided TourJournal of Molecular Biology, 2003
- Insertion and Assembly of Human Tom7 into the Preprotein Translocase Complex of the Outer Mitochondrial MembraneJournal of Biological Chemistry, 2002
- NMR identification of the Tom20 binding segment in mitochondrial presequencesJournal of Molecular Biology, 2001
- The loss in hydrophobic surface area resulting from a Leu to Val mutation at the N‐terminus of the aldehyde dehydrogenase presequence prevents import of the protein into mitochondriaProtein Science, 1999
- Identification of the human mitochondrial protein import receptor, huMas20p. Complementation of Δmas20 in yeastFEBS Letters, 1995
- Structure of the Signal Sequences for Two Mitochondrial Matrix Proteins That Are Not Proteolytically Processed upon ImportBiochemistry, 1994
- Evaluation of electrostatic and hydrophobic effects on the interaction of mitochondrial signal sequences with phospholipid bilayersBiochemistry, 1994
- 2D NMR and structural model for a mitochondrial signal peptide bound to a micelleBiochemistry, 1990