Sandbox 123456: Difference between revisions

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<Structure load='5FSA' size='350' frame='true' align='right' caption='Crystal structure of sterol 14-alpha demethylase (CYP51) from a pathogenic yeast Candida albicans in complex with the antifungal drug posaconazole PDB ID: 5FSA' />
<Structure load='5FSA' size='350' frame='true' align='right' caption='PDB ID: 5FSA' />


==Introduction==  
==Introduction==  
Noxafil, also known as posaconazole, was developed by Schering-Plough in the mid-2000s <ref name="acs">Posaconazole. (2011, December 12). Retrieved from https://www.acs.org/content/acs/en/molecule-of-the-week/archive/p/molecule-of-the-week-posaconazole.html?_ga=1.240614083.1136742914.1490798730 </ref>, and is a broad spectrum antifungal drug mainly used to treat fungal infections caused by ''Candida'' and ''Aspergillus'' species.  Noxafil is also often used when other antifungal medicines are not able to be tolerated or if the patient is immunocompromised.  Noxafil falls under the triazole class of antifungal drugs and thus works through inhibiting the biosynthesis of ergosterol in the fungal cell membrane, an essential factor that if inhibited, will lead to prevention of cell growth and ultimately death <ref name=pubchem>National Center for Biotechnology Information. PubChem Compound Database; CID=468595, https://pubchem.ncbi.nlm.nih.gov/compound/468595</ref>.  
Noxafil, also known as posaconazole, was developed by Schering-Plough in the mid-2000s <ref name="acs">Posaconazole. (2011, December 12). Retrieved from https://www.acs.org/content/acs/en/molecule-of-the-week/archive/p/molecule-of-the-week-posaconazole.html?_ga=1.240614083.1136742914.1490798730 </ref>, and is a broad spectrum antifungal drug mainly used to treat fungal infections caused by ''Candida'' and ''Aspergillus'' species.  Noxafil is also often used when other antifungal medicines are not able to be tolerated or if the patient is immunocompromised.  Noxafil falls under the triazole class of antifungal drugs and thus works through inhibiting the biosynthesis of ergosterol in the fungal cell membrane, an essential factor that if inhibited, will lead to prevention of cell growth and ultimately death <ref name=pubchem>National Center for Biotechnology Information. PubChem Compound Database; CID=468595, https://pubchem.ncbi.nlm.nih.gov/compound/468595</ref>.  


==Function/Structure==
==Function/Structure==
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The primary component of Noxafil, posaconazole (green link)  is  a potent, broad-spectrum antifungal drug. It was derived from a similar triazole antifungal agent, Itraconazole. The differences in structure are that the chlorine substituents in the aromatic ring on the left-hand side of the images are replaces with fluorines and that the triazolone sidechain is hydroxylated in the posaconazole structure<ref name="drugbank">Posaconazole. (n.d.). Retrieved from https://www.drugbank.ca/drugs/DB01263
The primary component of Noxafil, posaconazole (green link)  is  a potent, broad-spectrum antifungal drug. It was derived from a similar triazole antifungal agent, Itraconazole. The differences in structure are that the chlorine substituents in the aromatic ring on the left-hand side of the images are replaces with fluorines and that the triazolone sidechain is hydroxylated in the posaconazole structure<ref name="drugbank">Posaconazole. (n.d.). Retrieved from https://www.drugbank.ca/drugs/DB01263
Accession Number: DB01263 </ref>. The extended side chain residues and hydrophobic contacts enhances antifungal activity by allowing tighter binding affinities to the <scene name='75/756730/Hemegroup/1'>heme cofactor</scene> in the active site of the CYP450-dependent enzyme lanosterol alpha-demthylase (CYP51) <ref name="groll">doi:10.1586/14787210.3.4.467</ref><ref>doi: 10.1086/523576</ref>. The tighter binding affinity of posaconazole makes it less susceptible to be affected by mutations in the enzyme resulting in resistance of fungi <ref name="formularyjournal">Sircar-Ramsewak,, F., Nicolau, D. P., & Kuti, J. L. (2005). Focus on posaconazole: A novel triazole antifungal for the treatment of invasive fungal infections. Formulary Journal - Modern Medicine Network </ref>.  
Accession Number: DB01263 </ref>. The extended side chain residues and hydrophobic contacts enhances antifungal activity by allowing tighter binding affinities to the <scene name='75/756730/Hemegroup/1'>heme cofactor</scene> in the active site of the CYP450-dependent enzyme lanosterol alpha-demthylase (CYP51) <ref name="groll">doi:10.1586/14787210.3.4.467</ref><ref>doi: 10.1086/523576</ref>. The tighter binding affinity of posaconazole makes it less susceptible to be affected by mutations in the enzyme resulting in resistance of fungi <ref name="formularyjournal">Sircar-Ramsewak,, F., Nicolau, D. P., & Kuti, J. L. (2005). Focus on posaconazole: A novel triazole antifungal for the treatment of invasive fungal infections. Formulary Journal - Modern Medicine Network </ref>. The scene shows the crystal <scene name='75/756730/5fsa/1'>structure</scene> of sterol 14-alpha demethylase (CYP51) from a pathogenic yeast Candida albicans in complex with the antifungal drug posaconazole
 
Crystal <scene name='75/756730/5fsa/1'>structure</scene> of sterol 14-alpha demethylase (CYP51) from a pathogenic yeast Candida albicans in complex with the antifungal drug posaconazole