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Using [https://en.wikipedia.org/wiki/F%C3%B6rster_resonance_energy_transfer FRET] (Figure 7.) to measure the distance between the CTD of each monomer fluorescence quenching was observed as the concentration Zn<sup>2+</sup> increased, which supports that idea that Zn<sup>2+</sup> induces a stabilizing conformation change in the CTD.<ref>PMID:19749753</ref> CTD of both monomers were measured to be closer together when saturated with Zn<sup>2+</sup>.
Using [https://en.wikipedia.org/wiki/F%C3%B6rster_resonance_energy_transfer FRET] (Figure 7.) to measure the distance between the CTD of each monomer fluorescence quenching was observed as the concentration Zn<sup>2+</sup> increased, which supports that idea that Zn<sup>2+</sup> induces a stabilizing conformation change in the CTD.<ref>PMID:19749753</ref> CTD of both monomers were measured to be closer together when saturated with Zn<sup>2+</sup>.
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== Other 3d structures of Yiip ==
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== Links to Other YiiP Related Proteopedia Pages ==
'''Yiip in action'''
'''Yiip in action'''
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[http://proteopedia.org/wiki/index.php/3j1z (3j1z)], [http://proteopedia.org/wiki/index.php/3byp (3byp)]
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[http://proteopedia.org/wiki/index.php/3j1z (3j1z)]
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[http://proteopedia.org/wiki/index.php/3byp (3byp)]
'''Structure of Yiip'''
'''Structure of Yiip'''
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<ref> Fu, Dax. Zinc Transporter YiiP Escherichia Coli (n.d.): n. pag. Brookhaven National Laboratory, Mar. 2010. Web. 21 Apr. 2017.<ref>
<ref> Fu, Dax. Zinc Transporter YiiP Escherichia Coli (n.d.): n. pag. Brookhaven National Laboratory, Mar. 2010. Web. 21 Apr. 2017.<ref>
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<ref> Paulsen, I.T., and Jr. M.H. Saier. "A Novel Family of Ubiquitous Heavy Metal Ion Transport Proteins." SpringerLink. Springer-Verlag, n.d. Web. 21 Apr. 2017 <ref>

Revision as of 19:15, 21 April 2017

Introduction

Zinc transporter (TC# 2.A.4.7.1) is an integral membrane protein found in the membrane of Esherichia coli and a member of the cation diffusion facilitator family. Members of this family occur all throughout the biological realm, their primary function being the export of divalent transition metal ions from the cytoplasm to the extracellular space [1]. They work to regulate the amount of divalent metals inside of the cell, which are necessary for different biological functions but can prove to be fatal to the cell in excess amounts. Zinc is essential for the growth and development of cells and zinc levels can affect everything from gene expression to immune response in larger organisms. While YiiP is an integral membrane protein in the cells of Escherichia coli, understanding the mechanism of regulation behind it can help researchers better understand the cation diffusion facilitator equivalents in eukaryotic cells.

Zinc Transporter YiiP

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