Sandbox Reserved 390: Difference between revisions

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==COMPOUND ACTIVE SITE==
==COMPOUND ACTIVE SITE==
At the <scene name='Sandbox_Reserved_390/Top/12'>active site</scene> we can see how the <scene name='Sandbox_Reserved_390/Top/14'>ligand</scene> (in green) is stabilized. This molecule has approximately 36 <scene name='Sandbox_Reserved_390/Top/3'>alpha helices</scene> represented with magenta helices and approximately 40 <scene name='Sandbox_Reserved_390/Top/2'>beta sheets</scene> represented with blue arrows in the <scene name='Sandbox_Reserved_390/Top/4'>secondary structures</scene>.
At the <scene name='Sandbox_Reserved_390/Top/12'>active site</scene> we can see how the <scene name='Sandbox_Reserved_390/Top/14'>ligand</scene> (in green) is stabilized. This molecule has approximately 36 <scene name='Sandbox_Reserved_390/Top/3'>alpha helices</scene> represented with magenta helices and approximately 40 <scene name='Sandbox_Reserved_390/Top/2'>beta sheets</scene> represented with blue arrows in the <scene name='Sandbox_Reserved_390/Top/4'>secondary structures</scene>.
==STRUCTURE-ACTIVITY RELATIONS (SAR)==
This interplay between the protein, the DNA, and the drug explains the structure-activity relations of etoposide derivatives and the molecular basis of drug-resistant mutations. This resistance occurs via two mechanisms: '''1)''' Decreased accumulation via increased P-glycoprotein; and '''2)''' Changes in target proteins (mutation or decreased expression of topoisomerase II or decreased apoptosis due to mutation of p53).


==ETOPOSIDE RESISTANCE==
==ETOPOSIDE RESISTANCE==
The interplay between the protein, the DNA, and the drug explains the structure-activity relations of etoposide derivatives and the molecular basis of drug-resistant mutations. This resistance occurs via two mechanisms: '''1)''' Decreased accumulation via increased P-glycoprotein; and '''2)''' Changes in target proteins (mutation or decreased expression of topoisomerase II or decreased apoptosis due to mutation of p53).


'''1.''' Decreased accumulation via increased P-glycoprotein (a multidrug resistance): This drug resistance mechanism is characterized by decreased intracellular accumulation of drug facilitated by overexpression of the human multidrug resistance (mdrl) gene, causing overproduction of P-glycoprotein. This cell membrane protein acts as an export pump for a wide variety of unrelated foreign natural products. By maintaining lower intracellular levels of drug, fewer drugs would be available to the target, which is topoisomerase II.  
'''1.''' Decreased accumulation via increased P-glycoprotein (a multidrug resistance): This drug resistance mechanism is characterized by decreased intracellular accumulation of drug facilitated by overexpression of the human multidrug resistance (mdrl) gene, causing overproduction of P-glycoprotein. This cell membrane protein acts as an export pump for a wide variety of unrelated foreign natural products. By maintaining lower intracellular levels of drug, fewer drugs would be available to the target, which is topoisomerase II.  

Revision as of 14:41, 12 November 2012

Human topoisomerase IIbeta in complex with DNA and etoposide (Vepesid)

Structure of the human topoisomeraseIIbcore-DNA cleavage complex stabilized by the anticancer drug etoposide. (PDB entry 3QX3)

Drag the structure with the mouse to rotate


References