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==Overview==
==Overview==
ModE is a bacterial transcriptional regulator that orchestrates many, aspects of molybdenum metabolism by binding to specific DNA sequences in a, molybdate-dependent fashion. We present the crystal structure of, Escherichia coli ModE in complex with molybdate, which was determined at, 2.75A from a merohedrally twinned crystal (twin fraction approximately, 0.30) with space group P4(3). We now have structures of ModE in both its, "switched on" (ligand-bound) and "switched off" (apo) states. Comparison, with the apo structure shows that ligand binding leads to extensive, conformational changes not only in the molybdate-binding domain, but also, in the DNA-binding domain. The most obvious difference is the loss of the, pronounced asymmetry between the two chains of the ModE dimer, which had, been a characteristic property of the apo structure. Another major change, concerns the relative orientation of the two DNA-interacting winged, helix-turn-helix motifs. Manual docking of an idealized DNA structure, suggests that this conformational change should improve DNA binding of the, activated molybdate-bound ModE.
ModE is a bacterial transcriptional regulator that orchestrates many aspects of molybdenum metabolism by binding to specific DNA sequences in a molybdate-dependent fashion. We present the crystal structure of Escherichia coli ModE in complex with molybdate, which was determined at 2.75A from a merohedrally twinned crystal (twin fraction approximately 0.30) with space group P4(3). We now have structures of ModE in both its "switched on" (ligand-bound) and "switched off" (apo) states. Comparison with the apo structure shows that ligand binding leads to extensive conformational changes not only in the molybdate-binding domain, but also in the DNA-binding domain. The most obvious difference is the loss of the pronounced asymmetry between the two chains of the ModE dimer, which had been a characteristic property of the apo structure. Another major change concerns the relative orientation of the two DNA-interacting winged helix-turn-helix motifs. Manual docking of an idealized DNA structure suggests that this conformational change should improve DNA binding of the activated molybdate-bound ModE.


==About this Structure==
==About this Structure==
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[[Category: Escherichia coli]]
[[Category: Escherichia coli]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Hunter, W.N.]]
[[Category: Hunter, W N.]]
[[Category: Schuttelkopf, A.W.]]
[[Category: Schuttelkopf, A W.]]
[[Category: CA]]
[[Category: CA]]
[[Category: CL]]
[[Category: CL]]
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[[Category: winged helix-turn-helix]]
[[Category: winged helix-turn-helix]]


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