Abstract
Sumoylation has recently been identified as an important mechanism that regulates protein interactions and localization in essential cellular functions, such as gene transcription, subnuclear structure formation, viral infection, and cell cycle progression. A UMO inding amino acid sequence otif (SBM), which recognizes the SUMO moiety of modified proteins in sumoylation-dependent cellular functions, has been consistently identified by several recent studies. To understand the mechanism of SUMO recognition by the SBM, we have solved the solution structure of SUMO-1 in complex with a peptide containing the SBM derived from the protein PIASX (KVDVIDLTIESSSDEEEDPPAKR). Surprisingly, the structure reveals that the bound orientation of the SBM can reverse depending on the sequence context. The structure also reveals a novel mechanism of recognizing target sequences by a ubiquitin-like module. Unlike ubiquitin binding motifs, which all form helices and bind to the main β-sheet of ubiquitin, the SBM forms an extended structure that binds between the α-helix and a β-strand of SUMO-1. This study provides a clear mechanism of the SBM sequence variations and its recognition of the SUMO moiety in sumoylated proteins.
Cite
CITATION STYLE
Song, J., Zhang, Z., Hu, W., & Chen, Y. (2005). Small Ubiquitin-like Modifier (SUMO) Recognition of a SUMO Binding Motif. Journal of Biological Chemistry, 280(48), 40122–40129. https://doi.org/10.1074/jbc.m507059200
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.