2i4a

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(New page: 200px<br /><applet load="2i4a" size="350" color="white" frame="true" align="right" spinBox="true" caption="2i4a, resolution 1.00&Aring;" /> '''Crystal structure of...)
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==Overview==
==Overview==
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The crystal structure of thioredoxin (AaTrx) from the acetic acid, bacterium Acetobacter aceti was determined at 1 A resolution. This is, currently the highest resolution crystal structure available for any, thioredoxin. Thioredoxins facilitate thiol-disulfide exchange, a process, that is expected to be slow at the low pH values encountered in the A., aceti cytoplasm. Despite the apparent need to function at low pH, neither, the active site nor the surface charge distribution of AaTrx is notably, different from that of Escherichia coli thioredoxin. Apparently the, ancestral thioredoxin was sufficiently stable for use in A. aceti or the, need to interact with multiple targets constrained the variation of, surface residues. The AaTrx structure presented here provides a clear view, of all ionizable protein moieties and waters, a first step in, understanding how thiol-disulfide exchange might occur in a low pH, cytoplasm, and is a basis for biophysical studies of the mechanism of, acid-mediated unfolding. The high resolution of this structure should be, useful for computational studies of thioredoxin function, protein, structure and dynamics, and side-chain ionization.
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The crystal structure of thioredoxin (AaTrx) from the acetic acid bacterium Acetobacter aceti was determined at 1 A resolution. This is currently the highest resolution crystal structure available for any thioredoxin. Thioredoxins facilitate thiol-disulfide exchange, a process that is expected to be slow at the low pH values encountered in the A. aceti cytoplasm. Despite the apparent need to function at low pH, neither the active site nor the surface charge distribution of AaTrx is notably different from that of Escherichia coli thioredoxin. Apparently the ancestral thioredoxin was sufficiently stable for use in A. aceti or the need to interact with multiple targets constrained the variation of surface residues. The AaTrx structure presented here provides a clear view of all ionizable protein moieties and waters, a first step in understanding how thiol-disulfide exchange might occur in a low pH cytoplasm, and is a basis for biophysical studies of the mechanism of acid-mediated unfolding. The high resolution of this structure should be useful for computational studies of thioredoxin function, protein structure and dynamics, and side-chain ionization.
==About this Structure==
==About this Structure==
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[[Category: Acetobacter aceti]]
[[Category: Acetobacter aceti]]
[[Category: Protein complex]]
[[Category: Protein complex]]
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[[Category: Kappock, T.J.]]
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[[Category: Kappock, T J.]]
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[[Category: Starks, C.M.]]
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[[Category: Starks, C M.]]
[[Category: BME]]
[[Category: BME]]
[[Category: acidophile]]
[[Category: acidophile]]
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[[Category: thioredoxin]]
[[Category: thioredoxin]]
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Tue Jan 29 20:34:38 2008''
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''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 17:49:00 2008''

Revision as of 15:49, 21 February 2008


2i4a, resolution 1.00Å

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Crystal structure of thioredoxin from the acidophile Acetobacter aceti

Overview

The crystal structure of thioredoxin (AaTrx) from the acetic acid bacterium Acetobacter aceti was determined at 1 A resolution. This is currently the highest resolution crystal structure available for any thioredoxin. Thioredoxins facilitate thiol-disulfide exchange, a process that is expected to be slow at the low pH values encountered in the A. aceti cytoplasm. Despite the apparent need to function at low pH, neither the active site nor the surface charge distribution of AaTrx is notably different from that of Escherichia coli thioredoxin. Apparently the ancestral thioredoxin was sufficiently stable for use in A. aceti or the need to interact with multiple targets constrained the variation of surface residues. The AaTrx structure presented here provides a clear view of all ionizable protein moieties and waters, a first step in understanding how thiol-disulfide exchange might occur in a low pH cytoplasm, and is a basis for biophysical studies of the mechanism of acid-mediated unfolding. The high resolution of this structure should be useful for computational studies of thioredoxin function, protein structure and dynamics, and side-chain ionization.

About this Structure

2I4A is a Protein complex structure of sequences from Acetobacter aceti with as ligand. Full crystallographic information is available from OCA.

Reference

Atomic-resolution crystal structure of thioredoxin from the acidophilic bacterium Acetobacter aceti., Starks CM, Francois JA, MacArthur KM, Heard BZ, Kappock TJ, Protein Sci. 2007 Jan;16(1):92-8. PMID:17192591

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