Sequence and structural requirements of a mitochondrial protein import signal defined by saturation cassette mutagenesis.
Open Access
- 1 March 1989
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 9 (3) , 1014-1025
- https://doi.org/10.1128/mcb.9.3.1014
Abstract
The Saccharomyces cerevisiae F1-ATPase beta subunit precursor contains redundant mitochondrial protein import information at its NH2 terminus (D. M. Bedwell, D. J. Klionsky, and S. D. Emr, Mol. Cell. Biol. 7:4038-4047, 1987). To define the critical sequence and structural features contained within this topogenic signal, one of the redundant regions (representing a minimal targeting sequence) was subjected to saturation cassette mutagenesis. Each of 97 different mutant oligonucleotide isolates containing single (32 isolates), double (45 isolates), or triple (20 isolates) point mutations was inserted in front of a beta-subunit gene lacking the coding sequence for its normal import signal (codons 1 through 34 were deleted). The phenotypic and biochemical consequences of these mutations were then evaluated in a yeast strain deleted for its normal beta-subunit gene (delta atp2). Consistent with the lack of an obvious consensus sequence for mitochondrial protein import signals, many mutations occurring throughout the minimal targeting sequence did not significantly affect its import competence. However, some mutations did result in severe import defects. In these mutants, beta-subunit precursor accumulated in the cytoplasm, and the yeast cells exhibited a respiration defective phenotype. Although point mutations have previously been identified that block mitochondrial protein import in vitro, a subset of the mutations reported here represents the first single missense mutations that have been demonstrated to significantly block mitochondrial protein import in vivo. The previous lack of such mutations in the beta-subunit precursor apparently relates to the presence of redundant import information in this import signal. Together, our mutants define a set of constraints that appear to be critical for normal activity of this (and possibly other) import signals. These include the following: (i) mutant signals that exhibit a hydrophobic moment greater than 5.5 for the predicted amphiphilic alpha-helical conformation of this sequence direct near normal levels of beta-subunit import (ii) at least two basic residues are necessary for efficient signal function, (iii) acidic amino acids actively interfere with import competence, and (iv) helix-destabilizing residues also interfere with signal function. These experimental observations provide support for mitochondrial protein import models in which both the structure and charge of the import signal play a critical role in directing mitochondrial protein targeting and import.This publication has 44 references indexed in Scilit:
- Mitochondrial targeting sequences why ‘non‐amphiphilic’ peptides may still be amphiphilicFEBS Letters, 1988
- The ornithine transcarbamylase leader peptide directs mitochondrial import through both its midportion structure and net positive charge.The Journal of cell biology, 1987
- Sequences from a prokaryotic genome or the mouse dihydrofolate reductase gene can restore the import of a truncated precursor protein into yeast mitochondria.Proceedings of the National Academy of Sciences, 1987
- Amino-terminal deletions in the presequence of an imported mitochondrial protein block the targeting function and proteolytic cleavage of the presequence at the carboxy terminus.Journal of Biological Chemistry, 1987
- Sequences distal to the mitochondrial targeting sequences are necessary for the maturation of the F1-ATPase beta-subunit precursor in mitochondria.Journal of Biological Chemistry, 1987
- Targeting of pre-ornithine transcarbamylase to mitochondria: Definition of critical regions and residues in the leader peptideCell, 1986
- Transport of proteins into mitochondria: Translocational intermediates spanning contact sites between outer and inner membranesCell, 1985
- Import of proteins into mitochondria. Energy-dependent uptake of precursors by isolated mitochondria.Journal of Biological Chemistry, 1982
- A new pair of M13 vectors for selecting either DNA strand of double-digest restriction fragmentsGene, 1982
- Analysis of gene control signals by DNA fusion and cloning in Escherichia coliJournal of Molecular Biology, 1980