Lysine-specific demethylase 1 (LSD-1)

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====FAD Cofactor====
====FAD Cofactor====
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Within the active site cavity, there are <scene name='83/834203/Fadcofactor/5'>several residues</scene> (Val317, Gly330, Ala331, Met332, Val333, Phe538, Leu659, Asn660, Lys661, Trp695, Ser749, Ser760 and Tyr761) that presumably facilitate the interaction between the FAD and the substrate lysine.<ref name="Stavropolous"/> This pocket binds and positions the substrate lysine so that it is exposed to the FAD. During catalysis, the FAD is reduced and becomes anionic. Therefore, a positively charged residue is present in most FAD-dependent oxidases to assist in stabilizing the anionic form of FAD. In LSD-1, <scene name='83/834203/Lys661/2'>Lys661</scene> is present in the catalytic pocket of the active site to help stabilize the negative charge that develops on the FAD as it is reduced.<ref name="Stavropolous"/> The adenine-dinucleotide of FAD is bound by a [http://proteopedia.org/wiki/index.php/Rossmann_fold β-α-β Rossmann fold] that is of the glycine rich consensus sequence Gly-Ser-Gly-Val-Ser-Gly spanning <scene name='83/834203/Rossman/2'>residues 285-290</scene>. As is typical of a Rossmann fold, this sequence is in the loop connecting the first β-strand (β1) with the α-helix.
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Within the active site cavity, there are <scene name='83/834203/Fadcofactor/5'>several residues</scene> (Val317, Gly330, Ala331, Met332, Val333, Phe538, Leu659, Asn660, Lys661, Trp695, Ser749, Ser760 and Tyr761) that facilitate the interaction between the FAD cofactor and the substrate lysine.<ref name="Stavropolous"/> This pocket binds and positions the substrate lysine so that it is exposed to the FAD. During catalysis, the FAD is reduced and becomes anionic. To stabilize this negatively charged intermediate form of the cofactor, in most FAD-dependent oxidases a positively charged residue is found nearby. In LSD-1, <scene name='83/834203/Lys661/2'>Lys661</scene> is present in the catalytic pocket of the active site to help stabilize the negative charge that develops on the FAD as it is reduced.<ref name="Stavropolous"/> The adenine-dinucleotide moiety of FAD is bound by a [http://proteopedia.org/wiki/index.php/Rossmann_fold β-α-β Rossmann fold] that is of the glycine rich consensus sequence Gly-Ser-Gly-Val-Ser-Gly spanning <scene name='83/834203/Rossman/2'>residues 285-290</scene>. As is typical of a Rossmann fold, this sequence is in the loop connecting the first β-strand (β1) with the α-helix.
====Substrate Binding====
====Substrate Binding====

Revision as of 14:38, 3 August 2020

Human lysine-specific demethylase 1 (LSD-1), A repressor of transcription

LSD-1 (PDB: 2H94) overall 3D structure: Tower domain (blue), SWIRM domain (yellow), Oxidase domain (orange), and FAD cofactor (green).

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Nicholas Bantz, Sean Callahan, Cody Carley, Andrew Hesterhagen, Steve Klimcak, Michael Thomas

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