Title of article :
Structural Basis for 5′-End-Specific Recognition of Single-Stranded DNA by the R3H Domain from Human Sμbp-2
Author/Authors :
Kristaps Jaudzems، نويسنده , , Xinying Jia، نويسنده , , Hiromasa Yagi، نويسنده , , Dmitry Zhulenkovs، نويسنده , , Bim Graham، نويسنده , , Nicholas E Dixon and Gottfried Otting، نويسنده , , Edvards Liepinsh، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
12
From page :
42
To page :
53
Abstract :
The R3H domain is a conserved sequence motif in nucleic acid binding proteins. Previously, we reported the solution structure of the R3H domain and identified a putative nucleic acid binding site composed of three conserved basic residues [Liepinsh, E., Leonchiks, A., Sharipo, A., Guignard, L. & Otting, G. (2003). Solution structure of the R3H domain from human Sμbp‐2. J. Mol. Biol. 326, 217–223]. Here, we determine the binding affinities of mononucleotides and dinucleotides for the R3H domain from human Sμbp-2 (Sμbp2-R3H) and map their binding sites on the proteinʹs surface. Although the binding affinities show up to 260-fold selectivity between different nucleotides, their binding sites and conformations seem very similar. Further, we report the NMR structure of the Sμbp2-R3H in complex with deoxyguanosine 5′-monophosphate (dGMP) mimicking the 5′-end of single-stranded DNA. Pseudocontact shifts from a paramagnetic lanthanide tag attached to residue 731 in the mutant A731C confirmed that binding of dGMP brings a loop of the protein into closer proximity. The structure provides the first structural insight into single-stranded nucleic acid recognition by the R3H domain and shows that the R3H domain specifically binds the phosphorylated 5′-end through electrostatic interactions with the two conserved arginines and stacking interactions with the highly conserved histidine.
Keywords :
S?bp-2 , nucleotide binding , pseudocontact shifts , R3H domain , NMR spectroscopy
Journal title :
Journal of Molecular Biology
Serial Year :
2012
Journal title :
Journal of Molecular Biology
Record number :
1254956
Link To Document :
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