Sandbox Reserved 316: Difference between revisions

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{{STRUCTURE_3hle |  PDB=3hle  |  SCENE=  }}
==Introduction==
'''Simvastation synthase''' (LovD) is an enzyme isolated from the natural product biosynthetic pathways of ''Aspergillus terreus''. Simvastatin Synthase is an acyltransferase that converts the inactive monacolin J acid (MJA) by dimethylbutyryl chloride to yield the protected form of simvastatin, which is subsequently undergoes lactonization to yield simvastatin.
LovD can also synthesize the blockbuster drug simvastatin using MJA and a synthetic alpha-dimethylbutyryl thioester, albeit with suboptimal properties as a biocatalyst<ref name="paper">PMID:17277201</ref>.
==Exploring the structure==
==References==
<references/>

Revision as of 03:31, 15 March 2011

This Sandbox is Reserved from January 10, 2010, through April 10, 2011 for use in BCMB 307-Proteins course taught by Andrea Gorrell at the University of Northern British Columbia, Prince George, BC, Canada.
To get started:
  • Click the edit this page tab at the top. Save the page after each step, then edit it again.
  • Click the 3D button (when editing, above the wikitext box) to insert Jmol.
  • show the Scene authoring tools, create a molecular scene, and save it. Copy the green link into the page.
  • Add a description of your scene. Use the buttons above the wikitext box for bold, italics, links, headlines, etc.

More help: Help:Editing


Drag the structure with the mouse to rotate
3hle, resolution 2.06Å (default scene)
Ligands: DTT, MJA
Related: 1hld
Resources: FirstGlance, OCA, RCSB, PDBsum
Coordinates: save as pdb, mmCIF, xml


Introduction

Simvastation synthase (LovD) is an enzyme isolated from the natural product biosynthetic pathways of Aspergillus terreus. Simvastatin Synthase is an acyltransferase that converts the inactive monacolin J acid (MJA) by dimethylbutyryl chloride to yield the protected form of simvastatin, which is subsequently undergoes lactonization to yield simvastatin.

LovD can also synthesize the blockbuster drug simvastatin using MJA and a synthetic alpha-dimethylbutyryl thioester, albeit with suboptimal properties as a biocatalyst[1].

Exploring the structure

References

  1. ↑ Xie X, Tang Y. Efficient synthesis of simvastatin by use of whole-cell biocatalysis. Appl Environ Microbiol. 2007 Apr;73(7):2054-60. Epub 2007 Feb 2. PMID:17277201 doi:10.1128/AEM.02820-06