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  • The basic leucine zipper stress response regulator Yap5 senses high-iron conditions by coordination of [2Fe-2S] clusters.

The basic leucine zipper stress response regulator Yap5 senses high-iron conditions by coordination of [2Fe-2S] clusters.

Molecular and cellular biology (2014-11-05)
Nicole Rietzschel, Antonio J Pierik, Eckhard Bill, Roland Lill, Ulrich Mühlenhoff
ABSTRACT

Iron is an essential, yet at elevated concentrations toxic trace element. To date, the mechanisms of iron sensing by eukaryotic iron-responsive transcription factors are poorly understood. The Saccharomyces cerevisiae transcription factor Yap5, a member of the Yap family of bZIP stress response regulators, administrates the adaptive response to high-iron conditions. Despite the central role of the iron-sensing process for cell viability, the molecule perceived by Yap5 and the underlying regulatory mechanisms are unknown. Here, we show that Yap5 senses high-iron conditions by two Fe/S clusters bound to its activator domain (Yap5-AD). The more stable iron-regulatory Fe/S cluster at the N-terminal cysteine-rich domain (n-CRD) of Yap5 is detected in vivo and in vitro. The second cluster coordinated by the C-terminal CRD can only be shown after chemical reconstitution, since it is bound in a labile fashion. Both clusters are of the [2Fe-2S] type as characterized by UV/visible (UV/Vis), circular dichroism, electron paramagnetic resonance (EPR), and Mössbauer spectroscopy. Fe/S cluster binding to Yap5-AD induces a conformational change that may activate transcription. The cluster-binding motif of the n-CRD domain is highly conserved in HapX-like transcription factors of pathogenic fungi and thus may represent a general sensor module common to many eukaryotic stress response regulators.

MATERIALS
Product Number
Brand
Product Description

Iron, IRMM®, certified reference material, 0.5 mm wire
Sigma-Aldrich
Iron, foil, thickness 0.1 mm, ≥99.9% trace metals basis
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Iron, puriss. p.a., carbonyl-Iron powder, low in magnesium and manganese compounds, ≥99.5% (RT)
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Iron, powder, −325 mesh, 97%
Sigma-Aldrich
Iron, chips, 99.98% trace metals basis
Iron, foil, not light tested, 300x300mm, thickness 0.05mm, hard, 99.5%
Iron, foil, 25mm disks, thickness 0.005mm, 99.85%
Iron, foil, 1m coil, thickness 0.38mm, hard, 99.5%
Iron, foil, 1m coil, thickness 0.1mm, hard, 99.5%
Iron, foil, 50mm disks, thickness 0.05mm, hard, 99.5%
Iron, foil, not light tested, 25x25mm, thickness 0.004mm, 99.99+%
Iron, tube, 1000mm, outside diameter 12.0mm, inside diameter 10mm, wall thickness 1.0mm, annealed, 99.5%
Iron, foil, light tested, 50x50mm, thickness 0.025mm, hard, 99.5%
Iron, rod, 100mm, diameter 30mm, as drawn, armcO« soft ingot 99.8%
Iron, rod, 50mm, diameter 12.7mm, as drawn, 99.95%
Iron, foil, 100x100mm, thickness 0.125mm, hard, 99.5%
Iron, rod, 300mm, diameter 6.0mm, as drawn, 99.99+%
Iron, foil, 150x150mm, thickness 0.38mm, hard, 99.5%
Iron, rod, 50mm, diameter 40mm, as drawn, armcO« soft ingot 99.8%
Iron, rod, 50mm, diameter 5.0mm, as drawn, 99.99+%
Iron, wire reel, 50m, diameter 0.25mm, hard, 99.5%
Iron, rod, 100mm, diameter 2.0mm, as drawn, 99.95%
Iron, wire reel, 250m, diameter 0.25mm, hard, 99.5%
Iron, foil, 25x25mm, thickness 2mm, as rolled, 99.99+%
Sigma-Aldrich
Iron, nanopowder, 35-45 nm particle size, 99.5% trace metals basis
Iron, rod, 100mm, diameter 2.0mm, as drawn, 99.99+%
Iron, tube, 100mm, outside diameter 10.6mm, inside diameter 10.0mm, wall thickness 0.3mm, as drawn, 99.8+%
Iron, foil, 300x300mm, thickness 0.1mm, hard, 99.5%
Iron, wire reel, 1m, diameter 0.025mm, as drawn, 99.99+%
Iron, tube, 200mm, outside diameter 6.35mm, inside diameter 5.35mm, wall thickness 0.5mm, as drawn, 99.8%