Sandbox 177: Difference between revisions

From Proteopedia
Jump to navigationJump to search
No edit summary
No edit summary
Line 17: Line 17:
''In vivo'' CYPOR is believe to alternate between a one and a three electron reduced form.  While the 1 electron form is fairly stable, forming a neutral blue semiquinone, it is the hydroquinone, or 3 electron form, that is able to donate electrons to the desired redox partners.
''In vivo'' CYPOR is believe to alternate between a one and a three electron reduced form.  While the 1 electron form is fairly stable, forming a neutral blue semiquinone, it is the hydroquinone, or 3 electron form, that is able to donate electrons to the desired redox partners.


As part of the microsomal electron transport system, CYPOR moves electrons from NADPH -> FAD -> FMN -> cytochrome P450. Specifically a hydride anion is moved from NADPH to the FAD.  The two electrons are then individually passed to FMN, in a process that is believed to be conformationally gated, before being passed on to cytochrome P450, again one at a time.<ref name="5TSON"/>  This reduction of cytochrome P450 allows it to function in biosynthesis and biodegradation pathways of a variety of endogenous and foreign hydrophobic substrates, including drugs and steroids (2,6).<ref name="5TSON"/>
As part of the microsomal electron transport system, CYPOR moves electrons from NADPH -> FAD -> FMN -> cytochrome P450. Specifically a hydride anion is moved from NADPH to the FAD.  The two electrons are then individually passed to FMN, in a process that is believed to be conformationally gated, before being passed on to cytochrome P450, again one at a time.<ref name="5TSON"/>  This reduction of cytochrome P450 allows it to function in biosynthesis and biodegradation pathways of a variety of endogenous and foreign hydrophobic substrates, including drugs and steroids (2,6).<ref name="5TSON"/><ref name="2TSON">PMID:7743131</ref>


Cytochrome b5, cytochrome c and heme oxygenase can also receive electrons from CYPOR.<ref name="5TSON"/>  In these cases CYPOR is functioning in the heme degradation pathway, or with monooxygenase and/or 7-dehydrocholesterol reductase in sterol synthesis.<ref name="5TSON"/>
Cytochrome b5, cytochrome c and heme oxygenase can also receive electrons from CYPOR.<ref name="5TSON"/>  In these cases CYPOR is functioning in the heme degradation pathway, or with monooxygenase and/or 7-dehydrocholesterol reductase in sterol synthesis.<ref name="5TSON"/>


A function that is of particular interest currently is CYPOR’s ability to activate anticancer prodrugs reductively.<ref name="5TSON"/>  This makes it a potential target for anticancer research and therapy.<ref name="5TSON"/>
A function that is of particular interest currently is CYPOR’s ability to activate anticancer prodrugs reductively.<ref name="5TSON"/>  This makes it a potential target for anticancer research and therapy.<ref name="5TSON"/>
==References==
<references/>