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PDBsum entry 1tfe
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Elongation factor
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PDB id
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1tfe
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References listed in PDB file
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Key reference
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Title
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Structure and importance of the dimerization domain in elongation factor ts from thermus thermophilus.
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Authors
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Y.Jiang,
S.Nock,
M.Nesper,
M.Sprinzl,
P.B.Sigler.
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Ref.
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Biochemistry, 1996,
35,
10269-10278.
[DOI no: ]
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PubMed id
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Note In the PDB file this reference is
annotated as "TO BE PUBLISHED".
The citation details given above were identified by an automated
search of PubMed on title and author
names, giving a
perfect match.
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Abstract
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Elongation factor Ts (EF-Ts) functions as a nucleotide-exchange factor by
binding elongation factor Tu (EF-Tu) and accelerating the GDP dissociation from
EF-Tu; thus EF-Ts promotes the transition of EF-Tu from the inactive GDP form to
the active GTP form. Thermus thermophilus EF-Ts exists as a stable dimer in
solution which binds two molecules of EF-Tu to form a (EF-Tu.EF-Ts)2
heterotetramer. Here we report the crystal structure of the dimerization domain
of EF-Ts from T. thermophilus refined to 1.7 A resolution. A three-stranded
antiparallel beta-sheet from each subunit interacts to form a beta-sandwich that
serves as an extensive dimer interface tethered by a disulfide bond. This
interface is distinctly different from the predominantly alpha-helical one that
stabilizes the EF-Ts dimer from Escherichia coli [Kawashima, T., et al. (1996)
Nature 379, 511-518]. To test whether the homodimeric form of T. thermophilus
EF-Ts is necessary for catalyzing nucleotide exchange, the present structure was
used to design mutational changes within the dimer interface that disrupt the T.
thermophilus EF-Ts dimer but not the tertiary structure of the subunits.
Surprisingly, EF-Ts monomers created in this manner failed to catalyze
nucleotide exchange in EF-Tu, indicating that, in vitro. T. thermophilus EF-Ts
functions only as a homodimer.
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