Sandbox UNLPam 7

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in wine production they play a role in the hydrolysis
in wine production they play a role in the hydrolysis
of glycosylated terpene aroma compounds.
of glycosylated terpene aroma compounds.
 +
 +
==KoRha structure==
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The crystal structure of KoRha with rhamnose bound was
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determined to 2.7A ° resolution. The final model consisted of
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two KoRha subunits related by a non-crystallographic twofold
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axis (giving a corresponding solvent content of 73%) in
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the asymmetric unit, with each monomer containing a
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bound rhamnose. Dynamic light scattering had suggested
 +
that KoRha was a homodimer in solution and the structure
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of KoRha confirmed this, giving a dimer interface of 1389.9
 +
A °
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2 (as calculated using the PISA server (http://www.ebi.ac.
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uk/pdbe/pisa/).
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Each monomer of KoRha is composed of two
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domains. Domain A, the catalytic domain, is mainly ahelical,
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consisting of residues 11–30 and 180–523, and
 +
contains the bound rhamnose. Domain B, the dimerization
 +
domain, is a b-sandwich domain consisting of residues
 +
31–179.
</StructureSection>
</StructureSection>

Revision as of 13:16, 9 December 2015

Crystal structure of a novel two domain GH78 family a-rhamnosidase from Klebsiella oxytoca with rhamnose bound

Introduction

X-ray crystal structure of the a-L-rhamnosidase from K. oxytoca (KoRha).

Drag the structure with the mouse to rotate
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