Sandbox Reserved 1066: Difference between revisions

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''Mycobacterium tuberculosis'' ''(M.tb)'' is the causative agent involved in the disease '''tuberculosis'''. Tuberculosis is a growing global health concern that has been intensified due to the increase in HIV infections along with the increase in multi-drug resistance strains of ''(M. tb)'' <ref name="molecular studies">PMID: 20454815</ref>. Most of the drug resistance has evolved due to the intensive nature of the treatment for tuberculosis, which often goes incomplete thus resulting in drug resistant strains; therefore, the importance in identifying characteristics and residues to be exploited for new drug targets is pivotal <ref name="molecular studies"/>.
''Mycobacterium tuberculosis'' ''(M.tb)'' is the causative agent involved in the disease '''tuberculosis'''. Tuberculosis is a growing global health concern that has been intensified due to the increase in HIV infections along with the increase in multi-drug resistance strains of ''(M. tb)'' <ref name="molecular studies">PMID: 20454815</ref>. Most of the drug resistance has evolved due to the intensive nature of the treatment for tuberculosis, which often goes incomplete thus resulting in drug resistant strains; therefore, the importance in identifying characteristics and residues to be exploited for new drug targets is pivotal <ref name="molecular studies"/>.
   
   
The cell wall of ''(M. tb)'' is known to be composed and synthesized from a distinct variety of lipids, most notably mycolic acids, which are known to play a crucial role in the pathogenesis of ''(M. tb)'' <ref name="molecular studies"/>.
The cell wall of ''(M. tb)'' is known to be composed and synthesized from a distinct variety of lipids, most notably mycolic acids, which are known to play a crucial role in the pathogenesis of ''(M. tb)'' <ref name="molecular studies"/>
 
== Current Treatment ==
Currently the treatment for active cases of tuberculosis include the simultaneous therapeutic use of two or more frontline drugs: isoniazid, ethambutol, rifampicin and pyrazinamide. <ref name="molecular studies"/>
<ref name="Drug Inhibitors">PMID: 12164478</ref>


== Relevance of key mutational studies to the understanding and development of new inhibitors for FadD13 ==
== Relevance of key mutational studies to the understanding and development of new inhibitors for FadD13 ==
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<ref name="residue paper"/>
<ref name="residue paper"/>


== Inhibitors ==


== Future Research ==
While currently there are no specific drug targets for FadD13, a better understanding of key residues involved in the activation of very-long-chain fatty acids is a promising start to developing new drug targets for ''(M. tb)''.  
While currently there are no specific drug targets for FadD13, a better understanding of key residues involved in the activation of very-long-chain fatty acids is a promising start to developing new drug targets for ''(M. tb)''.  
<ref name="Drug Inhibitors">PMID: 12164478</ref>
== Future Research ==


</StructureSection>
</StructureSection>

Revision as of 13:54, 9 April 2015

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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Mycobacterium tuberculosis very-long-chain fatty acyl-CoA synthetase

Very Long Chain Fatty Acyl CoA Synthetase (FadD13)

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References



External Resources

Tuberculosis Wikipedia page

Mycobacterium tuberculosis Wikipedia page

Coenzyme A Wikipedia page

Acyl CoA Wikipedia Page

Mycolic Acid Wikipedia page