3itg: Difference between revisions

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'''Unreleased structure'''
{{Seed}}
[[Image:3itg.jpg|left|200px]]


The entry 3itg is ON HOLD until Paper Publication
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{{STRUCTURE_3itg|  PDB=3itg  |  SCENE=  }}


Authors: Tanner, J.J.
===Structure the proline utilization A proline dehydrogenase domain (PutA86-630) inactivated with N-propargylglycine===


Description: Structure the proline utilization A proline dehydrogenase domain (PutA86-630) inactivated with N-propargylglycine


''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Wed Sep 16 08:44:14 2009''
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{{ABSTRACT_PUBMED_19994913}}
 
==About this Structure==
3ITG is a 2 chains structure of sequences from [http://en.wikipedia.org/wiki/Escherichia_coli_k-12 Escherichia coli k-12]. Full crystallographic information is available from [http://oca.weizmann.ac.il/oca-bin/ocashort?id=3ITG OCA].
 
==Reference==
<ref group="xtra">PMID:19994913</ref><references group="xtra"/>
[[Category: Escherichia coli k-12]]
[[Category: Tanner, J J.]]
[[Category: Dna-binding]]
[[Category: Fad]]
[[Category: Flavoenzyme]]
[[Category: Flavoprotein]]
[[Category: Mechanism-based inactivation]]
[[Category: Multifunctional enzyme]]
[[Category: Nad]]
[[Category: Oxidoreductase]]
[[Category: Proline metabolism]]
[[Category: Proline utilization some]]
[[Category: Puta]]
[[Category: Repressor]]
[[Category: Transcription]]
[[Category: Transcription regulation]]
 
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Wed Jan 13 14:11:58 2010''

Revision as of 12:11, 13 January 2010

File:3itg.jpg

Template:STRUCTURE 3itg

Structure the proline utilization A proline dehydrogenase domain (PutA86-630) inactivated with N-propargylglycine

Template:ABSTRACT PUBMED 19994913

About this Structure

3ITG is a 2 chains structure of sequences from Escherichia coli k-12. Full crystallographic information is available from OCA.

Reference

  1. Srivastava D, Zhu W, Johnson WH, Whitman CP, Becker DF, Tanner JJ. The Structure of the Proline Utilization A Proline Dehydrogenase Domain Inactivated by N-Propargylglycine Provides Insight into Conformational Changes Induced by Substrate Binding and Flavin Reduction (,). Biochemistry. 2009 Dec 29. PMID:19994913 doi:10.1021/bi901717s

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