User:Nicholas Bantz/Sandbox 1

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=== Oxidase Domain ===
=== Oxidase Domain ===
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The <scene name='81/811088/Oxidasedomain/2'>oxidase domain</scene> is responsible for housing the site of catalytic activity in LSD-1. The domain has two distinct subunits: one non-covalently binds the FAD cofactor and the other acts in both the binding and recognition of the substrate lysine on a histone tail(H3)<ref name="Stavropolous"/>. The active site cavity is placed within the substrate-binding subunit of the oxidase domain and is unique due to its great size. In relation to other FAD-dependent oxidases, LSD-1 has an immense active site cavity that is 15 Å deep and 25 Å at its widest opening <ref name="Stavropolous"/>. In comparison, [https://en.wikipedia.org/wiki/Polyamine_oxidase polyamine oxidase], another FAD-dependent oxidase, has a catalytic chamber roughly 30 Å long but only a few angstroms wide <ref name=”Binda”>PMID:11258887</ref>. The relatively large size of the LSD-1 active site cavity suggests that additional residues, in addition to the substrate lysine, enter into the active site during catalysis. These additional residues could participate in substrate recognition and may contribute to the enzyme’s specificity for H3K4 and H3K9.
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The <scene name='81/811088/Oxidasedomain/3'>oxidase domain</scene> is responsible for housing the site of catalytic activity in LSD-1. The domain has two distinct subunits: one non-covalently binds the FAD cofactor and the other acts in both the binding and recognition of the substrate lysine on a histone tail(H3)<ref name="Stavropolous"/>. The active site cavity is placed within the substrate-binding subunit of the oxidase domain and is unique due to its great size. In relation to other FAD-dependent oxidases, LSD-1 has an immense active site cavity that is 15 Å deep and 25 Å at its widest opening <ref name="Stavropolous"/>. In comparison, [https://en.wikipedia.org/wiki/Polyamine_oxidase polyamine oxidase], another FAD-dependent oxidase, has a catalytic chamber roughly 30 Å long but only a few angstroms wide <ref name=”Binda”>PMID:11258887</ref>. The relatively large size of the LSD-1 active site cavity suggests that additional residues, in addition to the substrate lysine, enter into the active site during catalysis. These additional residues could participate in substrate recognition and may contribute to the enzyme’s specificity for H3K4 and H3K9.
====Active Site and FAD Cofactor====
====Active Site and FAD Cofactor====

Revision as of 20:59, 9 April 2019

LSD-1: Human lysine-specific demethylase 1

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

Drag the structure with the mouse to rotate

Student Contributors

  • Nicholas Bantz
  • Cody Carley
  • Michael Thomas

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Nicholas Bantz

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