Sandbox Reserved 1556
From Proteopedia
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- | {{Sandbox_Reserved_BHall_Chem351_F19}}<!-- PLEASE ADD YOUR CONTENT BELOW HERE --> | ||
==Tetrahydroprotoberberine N-methyltransferase== | ==Tetrahydroprotoberberine N-methyltransferase== | ||
+ | = Structure = | ||
<StructureSection load='5KOK' size='340' side='right' caption='Caption for this structure' scene=''> | <StructureSection load='5KOK' size='340' side='right' caption='Caption for this structure' scene=''> | ||
- | + | '''Tetrahydroprotoberbine N-methyltransferase''' is a protein that overall binding pocket adopts an “L-shape” which is complementary to a conformation that only the (S)-cis configuration of N-methylstylopine can readily adopt. The other product of the reaction, S-adenosyl-L-homocysteine (SAH), is found proximal to the CP within the cofactor binding site. | |
- | + | ||
== Function(s) and Biological Relevance == | == Function(s) and Biological Relevance == | ||
- | + | TNMT involved in the biosynthesis of protopine and benzophenanthridine alkaloids. Tetrahydroprotoberberine N-methyltransferase <scene name='82/823080/Tnmt/1'>(TNMT)</scene> catalyzes the conversion of the protoberberine alkaloids stylopine, canadine, and tetrahydropalmatine to their corresponding N-methylated derivatives. No activity with dimethoxytetrahydroisoquinoline, methylisoquinolinediol, norlaudanosoline, (R,S)-tetrahydroxyberbine, (S)-scoulerine or (R,S)-pavine as substrates. | |
The substrate specificity of TNMT enzymes appears to arise from the arrangement of subgroup-specific stereospecific recognition elements relative to catalytic elements that are more widely-conserved. This research will provide descriptive roles that TNMT plays such as pathway leading to the formation of different substrates including Protoberberine. | The substrate specificity of TNMT enzymes appears to arise from the arrangement of subgroup-specific stereospecific recognition elements relative to catalytic elements that are more widely-conserved. This research will provide descriptive roles that TNMT plays such as pathway leading to the formation of different substrates including Protoberberine. | ||
== Broader Implications == | == Broader Implications == | ||
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== References == | == References == | ||
<references/> | <references/> | ||
- | + | 1. Beng, G. T., Hamdan, M, R., Mordi, M. N., and Mansor, S.M.(2011)A sample and cost effective isolation and purification protocol of mitragynine from Mitragyna speciosa Korth(Ketum) leaves. ''Malaysian J. Anal. Sci.''15,54-57 | |
- | + | 2. Schrodinger, LLC (2015) The PyMOL Molecular Graphics System, Version 1.8, Schrodinger, LLC, New York | |
+ | 3. Shulgin, A. T., and Perry, W.E.(2002) ''The simple plant isoquinolines''pp. 6,11,24, and 51-57, Transform Press, Berkeley, California4 | ||
+ | 4. Winzer, T., Gazda, V., He, Z., Kaminski, F., Kern, M. Larson, T. R., Li, Y., Meade,F., Teodor,R., Vaistij, F.E., Walker,C.,Browser, T.A., and Graham, I.A.(2012) ''A Papaver somniferum 10-gene cluster for synthesis of the anticancer alkaloid noscapine. Science336'' CrossRef |
Current revision
Tetrahydroprotoberberine N-methyltransferase
Structure
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References
1. Beng, G. T., Hamdan, M, R., Mordi, M. N., and Mansor, S.M.(2011)A sample and cost effective isolation and purification protocol of mitragynine from Mitragyna speciosa Korth(Ketum) leaves. Malaysian J. Anal. Sci.15,54-57 2. Schrodinger, LLC (2015) The PyMOL Molecular Graphics System, Version 1.8, Schrodinger, LLC, New York 3. Shulgin, A. T., and Perry, W.E.(2002) The simple plant isoquinolinespp. 6,11,24, and 51-57, Transform Press, Berkeley, California4 4. Winzer, T., Gazda, V., He, Z., Kaminski, F., Kern, M. Larson, T. R., Li, Y., Meade,F., Teodor,R., Vaistij, F.E., Walker,C.,Browser, T.A., and Graham, I.A.(2012) A Papaver somniferum 10-gene cluster for synthesis of the anticancer alkaloid noscapine. Science336 CrossRef