bioRxiv · 10.1101/2022.09.02.506397
An Arg/Ala-Rich Helix in the N-Terminal Region of M. tuberculosis FtsQ Anchors FtsZ to Membranes
Abstract
Mycobacteria tuberculosis (Mtb) inflicts a quarter of the worldwide population. Most drugs for treating tuberculosis target cell growth and division. With rising drug resistance, it becomes ever more urgent to better understand Mtb cell division. This process begins with the formation of the Z-ring via polymerization of FtsZ and anchoring of the Z-ring to the inner membrane. Here, by combining solution and solid-state NMR spectroscopy with molecular dynamics simulations and other techniques, we show that the transmembrane protein FtsQ is a membrane anchor of the Mtb Z-ring. In the otherwise disordered N-terminal cytoplasmic region of FtsQ (residues 1-99), a 29-residue, Arg/Ala-rich -helix is formed that interacts with upstream acidic residues in solution and with acidic lipids at the membrane surface. The same helix also binds to the GTPase domain of FtsZ, with enormous implications for drug binding and Z-ring formation including its curvature.
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Escobar, C. A., Dey, S., Smrt, S. T., Cross, T. A., Zhou, H.-X.. 2022-09-03. An Arg/Ala-Rich Helix in the N-Terminal Region of M. tuberculosis FtsQ Anchors FtsZ to Membranes. https://doi.org/10.1101/2022.09.02.506397
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