Nitric Oxide-sensing H-NOX Proteins Govern Bacterial ... - PubMed
Abstract
Heme-nitric oxide/oxygen binding (H-NOX) domains function as sensors for the gaseous signaling agent nitric oxide (NO) in eukaryotes and bacteria. Mammalian NO signaling is well characterized and involves the H-NOX domain of soluble guanylate cyclase. In bacteria, H-NOX proteins interact with bacterial signaling proteins in two-component signaling systems or in cyclic-di-GMP metabolism. Characterization of several downstream signaling processes has shown that bacterial H-NOX proteins share a common role in controlling important bacterial communal behaviors in response to NO. The H-NOX pathways regulate motility, biofilm formation, quorum sensing, and symbiosis. Here, we review the latest structural and mechanistic studies that have elucidated how H-NOX domains selectively bind NO and transduce ligand binding into conformational changes that modulate activity of signaling partners. Furthermore, we summarize the recent advances in understanding the physiological function and biochemical details of the H-NOX signaling pathways.
Keywords: H-NOX; biofilm; cyclic-di-GMP; nitric oxide; quorum sensing; two-component signaling.
Copyright © 2013 Elsevier Ltd. All rights reserved.
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Figures
Fig. 1. X-ray crystal structure of Thermoanaerobacter…
Fig. 1. X-ray crystal structure of Thermoanaerobacter tengcongensis (Tt) H-NOX
A. Structure of the H-NOX…
Fig. 2. Distribution of selected bacterial H-NOX…
Fig. 2. Distribution of selected bacterial H-NOX genes and operon organization
A. Phylogenetic tree of…
Fig. 3. Determinants of ligand selectivity for…
Fig. 3. Determinants of ligand selectivity for O 2 and NO binding
A. The heme pocket…
Fig. 4. Ligand-induced activation mechanism
A. Structural…
Fig. 4. Ligand-induced activation mechanism
A. Structural alignment of selected Tt H-NOX crystal structures (left)…
Fig. 5. H-NOX-dependent control of biofilm formation…
Fig. 5. H-NOX-dependent control of biofilm formation through regulation of cyclic-di-GMP levels
A. H-NOX signaling…
Fig. 6. H-NOX-dependent control of host colonization…
Fig. 6. H-NOX-dependent control of host colonization in V. fischeri and cross-talk with quorum sensing…
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