Molecular basis for the phosphorylation of bacterial tyrosine kinase Wzc

Y Yun Yang M Mariana Batista B Bradley R. Clarke M Michelle R. Agyare-Tabbi H Haigang Song N Noah M. Kuehfuss A Audrey Le Bas C Carol V. Robinson (Kavli Institute for Nanoscience Discovery) C Chris Whitfield P Phillip J. Stansfeld J James H. Naismith (The Rosalind Franklin Institute, Harwell Campus, Didcot OX11 0QX, U.K.) J Jiwei Liu

Abstract

Abstract The regulation of polymerisation and translocation of biomolecules is fundamental. Wzc, an integral cytoplasmic membrane tyrosine autokinase protein serves as the master regulator of the biosynthesis and export of many bacterial capsular polysaccharides and exopolysaccharides. Such polysaccharides play essential roles in infection, defence, and some are important industrial products. Wzc comprises a large periplasmic domain, two transmembrane helices and a C-terminal cytoplasmic kinase domain with a tyrosine-rich tail. Wzc regulates polymerisation functions through cycling the formation and dissociation of an octameric complex, driven by changes in the phosphorylation status of the tyrosine-rich tail. E. coli Wzc serves a model for a wider family of polysaccharide co-polymerases. Here, we determine structures of intermediate states with different extents of phosphorylation. Structural and computational data reveal the pre-ordering of the tyrosine-rich tail, the molecular basis underlying the unidirectionality of phosphorylation events, and the underlying structural dynamics on how phosphorylation status is transmitted.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 11, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

Y

Yun Yang

M

Mariana Batista

B

Bradley R. Clarke

M

Michelle R. Agyare-Tabbi

H

Haigang Song

N

Noah M. Kuehfuss

A

Audrey Le Bas

C

Carol V. Robinson

Kavli Institute for Nanoscience Discovery

C

Chris Whitfield

P

Phillip J. Stansfeld

J

James H. Naismith

The Rosalind Franklin Institute, Harwell Campus, Didcot OX11 0QX, U.K.

J

Jiwei Liu