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PDBsum entry 3o8c
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Hydrolase/RNA
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PDB id
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3o8c
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Enzyme class 1:
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E.C.3.4.21.98
- hepacivirin.
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Reaction:
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Hydrolysis of four peptide bonds in the viral precursor polyprotein, commonly with Asp or Glu in the P6 position, Cys or Thr in P1 and Ser or Ala in P1'.
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Enzyme class 2:
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E.C.3.6.1.15
- nucleoside-triphosphate phosphatase.
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Reaction:
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a ribonucleoside 5'-triphosphate + H2O = a ribonucleoside 5'-diphosphate + phosphate + H+
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ribonucleoside 5'-triphosphate
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+
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H2O
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=
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ribonucleoside 5'-diphosphate
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+
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phosphate
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+
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H(+)
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Enzyme class 3:
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E.C.3.6.4.13
- Rna helicase.
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Reaction:
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ATP + H2O = ADP + phosphate + H+
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ATP
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+
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H2O
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=
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ADP
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+
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phosphate
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+
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H(+)
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Note, where more than one E.C. class is given (as above), each may
correspond to a different protein domain or, in the case of polyprotein
precursors, to a different mature protein.
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Molecule diagrams generated from .mol files obtained from the
KEGG ftp site
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J Mol Biol
405:1139-1153
(2011)
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PubMed id:
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Visualizing ATP-dependent RNA translocation by the NS3 helicase from HCV.
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T.C.Appleby,
R.Anderson,
O.Fedorova,
A.M.Pyle,
R.Wang,
X.Liu,
K.M.Brendza,
J.R.Somoza.
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ABSTRACT
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The structural mechanism by which nonstructural protein 3 (NS3) from the
hepatitis C virus (HCV) translocates along RNA is currently unknown. HCV NS3 is
an ATP-dependent motor protein essential for viral replication and a member of
the superfamily 2 helicases. Crystallographic analysis using a labeled RNA
oligonucleotide allowed us to unambiguously track the positional changes of RNA
bound to full-length HCV NS3 during two discrete steps of the ATP hydrolytic
cycle. The crystal structures of HCV NS3, NS3 bound to bromine-labeled RNA, and
a tertiary complex of NS3 bound to labeled RNA and a non-hydrolyzable ATP analog
provide a direct view of how large domain movements resulting from ATP binding
and hydrolysis allow the enzyme to translocate along the phosphodiester
backbone. While directional translocation of HCV NS3 by a single base pair per
ATP hydrolyzed is observed, the 3' end of the RNA does not shift register with
respect to a conserved tryptophan residue, supporting a
"spring-loading" mechanism that leads to larger steps by the enzyme as
it moves along a nucleic acid substrate.
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Literature references that cite this PDB file's key reference
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PubMed id
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Reference
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C.Bustamante,
W.Cheng,
Y.X.Mejia,
and
Y.X.Meija
(2011).
Revisiting the central dogma one molecule at a time.
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Cell,
144,
480-497.
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The most recent references are shown first.
Citation data come partly from CiteXplore and partly
from an automated harvesting procedure. Note that this is likely to be
only a partial list as not all journals are covered by
either method. However, we are continually building up the citation data
so more and more references will be included with time.
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}
}
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