Architecture and Evolution of Blade Assembly in β-propeller Lectins

  • Francois Bonnardel
  • , Atal Kumar
  • , Michaela Wimmerova
  • , Martina Lahmann
  • , Sergei Perez
  • , Annabelle Varrot
  • , Frédérique Lisacek
  • , Anne Imberty

Research output: Contribution to journalArticlepeer-review

135 Downloads (Pure)

Abstract

Lectins with a β-propeller fold bind glycans on the cell surface through multivalent binding sites and appropriate directionality. These proteins are formed by repeats of short domains, raising questions about evolutionary duplication. However, these repeats are difficult to detect in translated genomes and seldom correctly annotated in sequence databases. To address these issues, we defined the blade signature of the five types of β-propellers using 3D-structural data. With these templates, we predicted 3,887 β-propeller lectins in 1,889 species and organized this information in a searchable online database. The data reveal a widespread distribution of β-propeller lectins across species. Prediction also emphasizes multiple architectures and led to the discovery of a β-propeller assembly scenario. This was confirmed by producing and characterizing a predicted protein coded in the genome of Kordia zhangzhouensis. The crystal structure uncovers an intermediate in the evolution of β-propeller assembly and demonstrates the power of our tools.
Original languageEnglish
Pages (from-to)764-775
JournalStructure
Volume27
Issue number5
Early online date7 Mar 2019
DOIs
Publication statusPublished - 7 May 2019

Fingerprint

Dive into the research topics of 'Architecture and Evolution of Blade Assembly in β-propeller Lectins'. Together they form a unique fingerprint.

Cite this