Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

The Basal and Major Pilins in the Corynebacterium diphtheriae SpaA Pilus Adopt Similar Structures that Competitively React with the Pilin Polymerase

View through CrossRef
ABSTRACT Many species of pathogenic gram-positive bacteria display covalently crosslinked protein polymers (called pili or fimbriae) that mediate microbial adhesion to host tissues. These structures are assembled by pilus-specific sortase enzymes that join the pilin components together via lysine-isopeptide bonds. The archetypal SpaA pilus from Corynebacterium diphtheriae is built by the Cd SrtA pilus-specific sortase, which crosslinks lysine residues within the SpaA and SpaB pilins to build the shaft and base of the pilus, respectively. Here, we show that Cd SrtA crosslinks SpaB to SpaA via a K139(SpaB)-T494(SpaA) lysine-isopeptide bond. Despite sharing only limited sequence homology, an NMR structure of SpaB reveals striking similarities with the N-terminal domain of SpaA ( N SpaA) that is also crosslinked by Cd SrtA. In particular, both pilins contain similarly positioned reactive lysine residues and adjacent disordered AB loops that are predicted to be involved in the recently proposed “latch” mechanism of isopeptide bond formation. Competition experiments using an inactive SpaB variant and additional NMR studies suggest that SpaB terminates SpaA polymerization by outcompeting N SpaA for access to a shared thioester enzyme-substrate reaction intermediate.
Title: The Basal and Major Pilins in the Corynebacterium diphtheriae SpaA Pilus Adopt Similar Structures that Competitively React with the Pilin Polymerase
Description:
ABSTRACT Many species of pathogenic gram-positive bacteria display covalently crosslinked protein polymers (called pili or fimbriae) that mediate microbial adhesion to host tissues.
These structures are assembled by pilus-specific sortase enzymes that join the pilin components together via lysine-isopeptide bonds.
The archetypal SpaA pilus from Corynebacterium diphtheriae is built by the Cd SrtA pilus-specific sortase, which crosslinks lysine residues within the SpaA and SpaB pilins to build the shaft and base of the pilus, respectively.
Here, we show that Cd SrtA crosslinks SpaB to SpaA via a K139(SpaB)-T494(SpaA) lysine-isopeptide bond.
Despite sharing only limited sequence homology, an NMR structure of SpaB reveals striking similarities with the N-terminal domain of SpaA ( N SpaA) that is also crosslinked by Cd SrtA.
In particular, both pilins contain similarly positioned reactive lysine residues and adjacent disordered AB loops that are predicted to be involved in the recently proposed “latch” mechanism of isopeptide bond formation.
Competition experiments using an inactive SpaB variant and additional NMR studies suggest that SpaB terminates SpaA polymerization by outcompeting N SpaA for access to a shared thioester enzyme-substrate reaction intermediate.

Related Results

Molecular Strategy for Blocking Isopeptide Bond Formation in Nascent Pilin Proteins
Molecular Strategy for Blocking Isopeptide Bond Formation in Nascent Pilin Proteins
ABSTRACT Bacteria anchor to their host cells through their adhesive pili, which must resist the large mechanical stresses induced by the host as ...
The PilT retraction ATPase promotes both extension and retraction of the MSHA type IVa pilus in Vibrio cholerae
The PilT retraction ATPase promotes both extension and retraction of the MSHA type IVa pilus in Vibrio cholerae
ABSTRACT Diverse bacterial species use type IVa pili (T4aP) to interact with their environments. The dynamic extension and retraction of T4aP is critical for their ...
Antibacterial Effectiveness of White Champaca Flower (Michelia alba dc) Against Growth of Corynebacterium diphtheriae
Antibacterial Effectiveness of White Champaca Flower (Michelia alba dc) Against Growth of Corynebacterium diphtheriae
Background: Corynebacterium diphtheriae is a bacterium that attacks the respiratory tract, especially the larynx, tonsils, and throat. These bacteria can release toxins that can ca...
ANTIBACTERIAL EFFECT OF EUGENIA POLYANTHA WIGHT WITH CORYNEBACTERIUM DIPHTHERIAE NON-TOXIGENIC
ANTIBACTERIAL EFFECT OF EUGENIA POLYANTHA WIGHT WITH CORYNEBACTERIUM DIPHTHERIAE NON-TOXIGENIC
Introduction: Corynebacterium diphtheriae is a bacteria that causes diphtheria. In recent years, the bacterium is resistant to antibiotics. Eugenia polyantha wight might be a suita...

Back to Top