YfdX

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== Where YfdX Comes From ==
== Where YfdX Comes From ==
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YfdX is a product of yfdXWUVE operon and is said to be under the control of <scene name='81/814058/Evga/1'>EvgA</scene>. EvgA come from the EvgAS. EvgAS is a two-component system that modulates drug resistance of E. coli by regulating the expression of the drug transporters <ref name=nishino>PMID: 12670992</ref>. EvgA research has shown that the toxin is made up of 1 molecule of each PltA and CdtB with 5 molecules of PltB <ref name=nishino/>. EvgA is the response regulator and modulates the expression of emrKY, which encodes a bile salt specific exporter and yhiUV which encodes a multidrug exporter <ref name=nishino/> However, over expression of EvgA gives potential an acid resistant phenotype <ref name=nishino/>. The acid resistance is somewhat got in rid of by the deletion of ydeP, yhiE, or ydeO, genes induced by EvgA overexpression <ref name=nishino/>. Along with EvgA most likely planning major role in tolerance to outside forces the yfdXWUVE operon does as well. The yfdXWUVE operon appears to encode proteins that enhance the ability of Salmonella to survive under acidic conditions (Toyota, Cory G., et al).
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YfdX is a product of yfdXWUVE operon and is said to be under the control of <scene name='81/814058/Evga/1'>EvgA</scene>. EvgA come from the EvgAS. EvgAS is a two-component system that modulates drug resistance of E. coli by regulating the expression of the drug transporters <ref name=nishino>PMID: 12670992</ref>. EvgA research has shown that the toxin is made up of 1 molecule of each PltA and CdtB with 5 molecules of PltB <ref name=nishino/>. EvgA is the response regulator and modulates the expression of emrKY, which encodes a bile salt specific exporter and yhiUV which encodes a multidrug exporter <ref name=nishino/> However, over expression of EvgA gives potential an acid resistant phenotype <ref name=nishino/>. The acid resistance is somewhat got in rid of by the deletion of ydeP, yhiE, or ydeO, genes induced by EvgA overexpression <ref name=nishino/>. Along with EvgA most likely planning major role in tolerance to outside forces the yfdXWUVE operon does as well. The yfdXWUVE operon appears to encode proteins that enhance the ability of Salmonella to survive under acidic conditions <ref name=cory>PMID: 18245280</ref>.
== Structural highlights of YfdX ==
== Structural highlights of YfdX ==

Revision as of 14:29, 29 April 2019

Cite error: Invalid <ref> tag; refs with no name must have content==Your Heading Here (maybe something like 'Structure')== YfdX linkage to Typhoid Fever

Caption for this structure

Drag the structure with the mouse to rotate

References

Saha, P. et al. Antibiotic binding of STY3178, a yfdX protein from Salmonella Typhi. Sci. Rep. 6, 21305; doi: 10.1038/srep21305 (2016).
  1. Hanson, R. M., Prilusky, J., Renjian, Z., Nakane, T. and Sussman, J. L. (2013), JSmol and the Next-Generation Web-Based Representation of 3D Molecular Structure as Applied to Proteopedia. Isr. J. Chem., 53:207-216. doi:http://dx.doi.org/10.1002/ijch.201300024
  2. Herraez A. Biomolecules in the computer: Jmol to the rescue. Biochem Mol Biol Educ. 2006 Jul;34(4):255-61. doi: 10.1002/bmb.2006.494034042644. PMID:21638687 doi:10.1002/bmb.2006.494034042644
  3. 3.00 3.01 3.02 3.03 3.04 3.05 3.06 3.07 3.08 3.09 3.10 3.11 3.12 3.13 3.14 3.15 3.16 3.17 3.18 Chong A, Lee S, Yang YA, Song J. The Role of Typhoid Toxin in Salmonella Typhi Virulence. Yale J Biol Med. 2017 Jun 23;90(2):283-290. eCollection 2017 Jun. PMID:28656014
  4. 4.0 4.1 4.2 4.3 4.4 Nishino K, Inazumi Y, Yamaguchi A. Global analysis of genes regulated by EvgA of the two-component regulatory system in Escherichia coli. J Bacteriol. 2003 Apr;185(8):2667-72. PMID:12670992
  5. Toyota CG, Berthold CL, Gruez A, Jonsson S, Lindqvist Y, Cambillau C, Richards NG. Differential substrate specificity and kinetic behavior of Escherichia coli YfdW and Oxalobacter formigenes formyl coenzyme A transferase. J Bacteriol. 2008 Apr;190(7):2556-64. Epub 2008 Feb 1. PMID:18245280 doi:10.1128/JB.01823-07

Chong, A., Lee, S., Yang, Y. A., & Song, J. (2017). The Role of Typhoid Toxin in Salmonella Typhi Virulence
. The Yale journal of biology and medicine, 90(2), 283-290. “Salmonella Are Armed, Agile and Primed for Invasion.” National Institutes of Health, U.S. Department of Health and Human Services, 6 July 2015

Nishino, K., Inazumi, Y., & Yamaguchi, A. (2003). Global analysis of genes regulated by EvgA of the two-component regulatory system in Escherichia coli. Journal of bacteriology, 185(8), 2667-72.

Toyota, Cory G., et al. “Differential Substrate Specificity and Kinetic Behavior of Escherichia Coli YfdW and Oxalobacter Formigenes Formyl Coenzyme A Transferase.” Journal of Bacteriology, American Society for Microbiology Journals, 1 Apr. 2008, jb.asm.org/content/190/7/2556#skip-link.

Lee, Hye Seon, et al. “Structural and Physiological Exploration of Salmonella Typhi YfdX Uncovers Its Dual Function in Bacterial Antibiotic Stress and Virulence.” Frontiers in Microbiology, Frontiers Media S.A., 14 Jan. 2019,

Saha, P., Manna, C., Das, S., & Ghosh, M. (2016). Antibiotic binding of STY3178, a yfdX protein from Salmonella Typhi. Scientific reports, 6, 21305. doi:10.1038/srep21305

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Erika Cross, Michal Harel

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