Sandbox Reserved 1053

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== Biological Function ==
== Biological Function ==
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Czr A is a transcriptional repressor protein responsible for the regulation of the Czr operon. The Czr operon contains genes for the proteins Czr A and Czr B. Czr B is a Zinc transport protein which moves Zn 2+ out of a cell while Czr A regulates this process by controlling expression level of Czr B. When relatively low amounts of zinc are present in the cell Czr A will bind to DNA, preventing the progression of RNA polymerase and thus inhibiting expression of Czr B. Decreased expression of Czr B results in the ability of the cell to retain Zn 2+ more readily. Because Czr A and Czr B are transcribed as part of the same operon, an inhibitor of Czr A must be readily available to allow full transcription of Czr B when necessary. Czr A is noncompetitively inhibited by the binding of two Zn 2+ ions, which is ideal in that this allows for expression of Czr B, a zinc transporter to be dependent on the relative amount of zinc in the cell. Czr A displays two different conformations; the first typically binds DNA and has relatively low affinity for Zn 2+, in this conformation the <scene name='69/694220/A5_helices__dna_binding/1'>a5 helices are open</scene>. The <scene name='69/694220/Zinc_binding_residues/3'>a5 helices swing down </scene> to achieve the other conformation which binds two Zn 2+ ions and has relatively low affinity for DNA.
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Czr A is a transcriptional repressor protein responsible for the regulation of the Czr operon. The Czr operon contains genes for the proteins Czr A and Czr B. Czr B is a Zinc transport protein which moves Zn 2+ out of a cell while Czr A regulates this process by controlling expression level of Czr B. When relatively low amounts of zinc are present in the cell Czr A will bind to DNA, preventing the progression of RNA polymerase and thus inhibiting expression of Czr B. Decreased expression of Czr B results in the ability of the cell to retain Zn 2+ more readily. Because Czr A and Czr B are transcribed as part of the same operon, an inhibitor of Czr A must be readily available to allow full transcription of Czr B when necessary. Czr A is noncompetitively inhibited by the binding of two Zn 2+ ions, which is ideal in that this allows for expression of Czr B, a zinc transporter to be dependent on the relative amount of zinc in the cell. Czr A displays two different conformations; the first typically binds DNA and has relatively low affinity for Zn 2+, in this conformation the <scene name='69/694220/A5_helices__dna_binding/1'>a5 helices are open</scene>. The<scene name='69/694220/A5_helices__dna_binding/1'>a5 helices swing down</scene> to achieve the other conformation which binds two Zn 2+ ions and has relatively low affinity for DNA.
===DNA Binding ===
===DNA Binding ===
===Zinc Binding ===
===Zinc Binding ===

Revision as of 12:33, 28 March 2017

This Sandbox is Reserved from 02/09/2015, through 05/31/2016 for use in the course "CH462: Biochemistry 2" taught by Geoffrey C. Hoops at the Butler University. This reservation includes Sandbox Reserved 1051 through Sandbox Reserved 1080.
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Czr A Staphylococcus aureus

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