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PDBsum entry 4n4c
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PDB id:
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Hydrolase
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Title:
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Crystal structure of thE C-terminal swapped dimer of a bovine seminal ribonuclease mutant
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Structure:
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Seminal ribonuclease. Chain: a, b. Fragment: unp residues 27-150. Synonym: s-rnase, seminal rnase, ribonuclease bs-1. Engineered: yes. Mutation: yes
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Source:
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Bos taurus. Bovine,cow,domestic cattle,domestic cow. Organism_taxid: 9913. Gene: srn. Expressed in: escherichia coli. Expression_system_taxid: 562
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Resolution:
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2.48Å
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R-factor:
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0.171
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R-free:
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0.186
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Authors:
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A.Pica,I.Russo Krauss,A.Merlino,F.Sica
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Key ref:
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F.Sica
et al.
(2013).
The multiple forms of bovine seminal ribonuclease: structure and stability of a C-terminal swapped dimer.
Febs Lett,
587,
3755-3762.
PubMed id:
DOI:
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Date:
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08-Oct-13
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Release date:
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06-Nov-13
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PROCHECK
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Headers
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References
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P00669
(RNS_BOVIN) -
Seminal ribonuclease from Bos taurus
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Seq: Struc:
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150 a.a.
124 a.a.*
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Key: |
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Secondary structure |
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CATH domain |
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*
PDB and UniProt seqs differ
at 6 residue positions (black
crosses)
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Enzyme class:
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E.C.4.6.1.18
- pancreatic ribonuclease.
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Reaction:
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1.
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an [RNA] containing cytidine + H2O = an [RNA]-3'-cytidine- 3'-phosphate + a 5'-hydroxy-ribonucleotide-3'-[RNA]
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2.
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an [RNA] containing uridine + H2O = an [RNA]-3'-uridine-3'-phosphate + a 5'-hydroxy-ribonucleotide-3'-[RNA]
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DOI no:
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Febs Lett
587:3755-3762
(2013)
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PubMed id:
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The multiple forms of bovine seminal ribonuclease: structure and stability of a C-terminal swapped dimer.
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F.Sica,
A.Pica,
A.Merlino,
I.Russo Krauss,
C.Ercole,
D.Picone.
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ABSTRACT
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Bovine seminal ribonuclease (BS-RNase) acquires an interesting anti-tumor
activity associated with the swapping on the N-terminal. The first direct
experimental evidence on the formation of a C-terminal swapped dimer (C-dimer)
obtained from the monomeric derivative of BS-RNase, although under non-native
conditions, is here reported. The X-ray model of this dimer reveals a quaternary
structure different from that of the C-dimer of RNase A, due to the presence of
three mutations in the hinge peptide 111-116. The mutations increase the hinge
peptide flexibility and decrease the stability of the C-dimer against
dissociation. The biological implications of the structural data are also
discussed.
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');
}
}
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