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-   -   [NMR paper] Backbone and side chain NMR assignments of Geobacillus stearothermophilus ZapA allow identification of residues that mediate the interaction of ZapA with FtsZ. (http://www.bionmr.com/forum/journal-club-9/backbone-side-chain-nmr-assignments-geobacillus-stearothermophilus-zapa-allow-identification-residues-mediate-interaction-zapa-ftsz-22206/)

nmrlearner 05-15-2015 08:02 PM

Backbone and side chain NMR assignments of Geobacillus stearothermophilus ZapA allow identification of residues that mediate the interaction of ZapA with FtsZ.
 
Backbone and side chain NMR assignments of Geobacillus stearothermophilus ZapA allow identification of residues that mediate the interaction of ZapA with FtsZ.

Related Articles Backbone and side chain NMR assignments of Geobacillus stearothermophilus ZapA allow identification of residues that mediate the interaction of ZapA with FtsZ.

Biomol NMR Assign. 2015 May 13;

Authors: Nogueira ML, Sforça ML, Chin YK, Mobli M, Handler A, Gorbatyuk VY, Robson SA, King GF, Gueiros-Filho FJ, Zeri AC

Abstract
Bacterial division begins with the formation of a contractile protein ring at midcell, which constricts the bacterial envelope to generate two daughter cells. The central component of the division ring is FtsZ, a tubulin-like protein capable of self-assembling into filaments which further associate into a higher order structure known as the Z ring. Proteins that bind to FtsZ play a crucial role in the formation and regulation of the Z ring. One such protein is ZapA, a widely conserved 21*kDa homodimeric protein that associates with FtsZ filaments and promotes their bundling. Although ZapA was discovered more than a decade ago, the structural details of its interaction with FtsZ remain unknown. In this work, backbone and side chain NMR assignments for the Geobacillus stearothermophilus ZapA homodimer are described. We titrated FtsZ into (15)N(2)H-ZapA and mapped ZapA residues whose resonances are perturbed upon FtsZ binding. This information provides a structural understanding of the interaction between FtsZ and ZapA.


PMID: 25967379 [PubMed - as supplied by publisher]



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