Structure of dual BON-domain protein DolP identifies phospholipid binding as a new mechanism for protein localisation.

Bryant, Jack Alfred; Morris, Faye C; Knowles, Timothy J; Maderbocus, Riyaz; Heinz, Eva; Boelter, Gabriela; Alodaini, Dema; Colyer, Adam et al. · Elife · 2020

basic_science · Level V

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Abstract

The Gram-negative outer-membrane envelops the bacterium and functions as a permeability barrier against antibiotics, detergents, and environmental stresses. Some virulence factors serve to maintain the integrity of the outer membrane, including DolP (formerly YraP) a protein of unresolved structure and function. Here, we reveal DolP is a lipoprotein functionally conserved amongst Gram-negative bacteria and that loss of DolP increases membrane fluidity. We present the NMR solution structure for <i>Escherichia coli</i> DolP, which is composed of two BON domains that form an interconnected opposing pair. The C-terminal BON domain binds anionic phospholipids through an extensive membrane:protein interface. This interaction is essential for DolP function and is required for sub-cellular localisation of the protein to the cell division site, providing evidence of subcellular localisation of these phospholipids within the outer membrane. The structure of DolP provides a new target for developing therapies that disrupt the integrity of the bacterial cell envelope.

Medical subject headings