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Structural requirements for interaction of peroxisomal targeting signal 2 and its receptor PEX7.


ABSTRACT: The import of a subset of peroxisomal matrix proteins is mediated by the peroxisomal targeting signal 2 (PTS2). The results of our sequence and physical property analysis of known PTS2 signals and of a mutational study of the least characterized amino acids of a canonical PTS2 motif indicate that PTS2 forms an amphipathic helix accumulating all conserved residues on one side. Three-dimensional structural modeling of the PTS2 receptor PEX7 reveals a groove with an evolutionarily conserved charge distribution complementary to PTS2 signals. Mammalian two-hybrid assays and cross-complementation of a mutation in PTS2 by a compensatory mutation in PEX7 confirm the interaction site. An unstructured linker region separates the PTS2 signal from the core protein. This additional information on PTS2 signals was used to generate a PTS2 prediction algorithm that enabled us to identify novel PTS2 signals within human proteins and to describe KChIP4 as a novel peroxisomal protein.

SUBMITTER: Kunze M 

PROVIDER: S-EPMC3247985 | biostudies-literature | 2011 Dec

REPOSITORIES: biostudies-literature

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Structural requirements for interaction of peroxisomal targeting signal 2 and its receptor PEX7.

Kunze Markus M   Neuberger Georg G   Maurer-Stroh Sebastian S   Ma Jianmin J   Eck Thomas T   Braverman Nancy N   Schmid Johannes A JA   Eisenhaber Frank F   Berger Johannes J  

The Journal of biological chemistry 20111105 52


The import of a subset of peroxisomal matrix proteins is mediated by the peroxisomal targeting signal 2 (PTS2). The results of our sequence and physical property analysis of known PTS2 signals and of a mutational study of the least characterized amino acids of a canonical PTS2 motif indicate that PTS2 forms an amphipathic helix accumulating all conserved residues on one side. Three-dimensional structural modeling of the PTS2 receptor PEX7 reveals a groove with an evolutionarily conserved charge  ...[more]

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