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PMID: 16870393 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Sel1-like repeat proteins in signal transduction.

Cellular signalling ·Vol. 19 ·No. 1 ·2007-01-00 ·Pages 20-31

Mittl PR, Schneider-Brachert W

Abstract

Solenoid proteins, which are distinguished from general globular proteins by their modular architectures, are frequently involved in signal transduction pathways. Proteins from the tetratricopeptide repeat (TPR) and Sel1-like repeat (SLR) families share similar alpha-helical conformations but different consensus sequence lengths and superhelical topologies. Both families are characterized by low sequence similarity levels, rendering the identification of functional homologous difficult. Therefore current knowledge of the molecular and cellular functions of the SLR proteins Sel1, Hrd3, Chs4, Nif1, PodJ, ExoR, AlgK, HcpA, Hsp12, EnhC, LpnE, MotX, and MerG has been reviewed. Although SLR proteins possess different cellular functions they all seem to serve as adaptor proteins for the assembly of macromolecular complexes. Sel1, Hrd3, Hsp12 and LpnE are activated under cellular stress. The eukaryotic Sel1 and Hrd3 proteins are involved in the ER-associated protein degradation, whereas the bacterial LpnE, EnhC, HcpA, ExoR, and AlgK proteins mediate the interactions between bacterial and eukaryotic host cells. LpnE and EnhC are responsible for the entry of L. pneumophila into epithelial cells and macrophages. ExoR from the symbiotic microorganism S. melioti and AlgK from the pathogen P. aeruginosa regulate exopolysaccaride synthesis. Nif1 and Chs4 from yeast are responsible for the regulation of mitosis and septum formation during cell division, respectively, and PodJ guides the cellular differentiation during the cell cycle of the bacterium C. crescentus. Taken together the SLR motif establishes a link between signal transduction pathways from eukaryotes and bacteria. The SLR motif is so far absent from archaea. Therefore the SLR could have developed in the last common ancestor between eukaryotes and bacteria.

MeSH Terms
Amino Acid Motifs Amino Acid Sequence Animals Bacterial Proteins/chemistry,physiology Caenorhabditis elegans Proteins/chemistry,physiology Humans Molecular Sequence Data Protein Structure, Secondary Repetitive Sequences, Amino Acid Saccharomyces cerevisiae Proteins/chemistry,metabolism Signal Transduction
Chemicals
Bacterial Proteins Caenorhabditis elegans Proteins Saccharomyces cerevisiae Proteins
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Mittl Peer R E
Biochemisches Institut, Universität Zürich, Winterthurer Strasse 190, 8057 Zürich, Switzerland. mittl@bioc.unizh.ch
Schneider-Brachert Wulf
Article Info
Journal
Cellular signalling
Abbr.
Cell Signal
ISSN
0898-6568
Published
2007-01-00
Epub
2006-00-25
Pages
20-31
Language
English
Region
England
NLM ID
8904683
Subset
IM
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