Refined Structure, DNA Binding Studies, and Dynamics of the Bacteriophage Pf3 Encoded Single-Stranded DNA Binding Protein,

异核分子 DNA 寡核苷酸 结晶学 生物物理学 核蛋白 噬菌体 DNA结合域 B3域 化学 生物 核磁共振波谱 生物化学 立体化学 大肠杆菌 基因 转录因子
作者
R.H.A. Folmer,Michaël Nilges,C.H.M. Papavoine,B. J. M. Harmsen,R N Konings,Cornelis W. Hilbers
出处
期刊:Biochemistry [American Chemical Society]
卷期号:36 (30): 9120-9135 被引量:23
标识
DOI:10.1021/bi970251t
摘要

The solution structure of the 18-kDa single-stranded DNA binding protein encoded by the filamentous Pseudomonas bacteriophage Pf3 has been refined using 40 ms 15N- and 13C-edited NOESY spectra and many homo- and heteronuclear J-couplings. The structures are highly precise, but some variation was found in the orientation of the β-hairpin denoted the DNA binding wing with respect to the core of the protein. Backbone dynamics of the protein was investigated in the presence and absence of DNA by measuring the R1 and R2 relaxation rates of the 15N nuclei and the 15N−1H NOE. It was found that the DNA binding wing is much more flexible than the rest of the protein, but its mobility is largely arrested upon binding of the protein to d(A)6. This confirms earlier hypotheses on the role of this hairpin in the function of the protein, as will be discussed. Furthermore, the complete DNA binding domain of the protein has been mapped by recording two-dimensional TOCSY spectra of the protein in the presence and absence of a small amount of spin-labeled oligonucleotide. The roles of specific residues in DNA binding were assessed by stoichiometric titration of d(A)6, which indicated for instance that Phe43 forms base stacking interactions with the single-stranded DNA. Finally, all results were combined to form a set of experimental restraints, which were subsequently used in restrained molecular dynamics calculations aimed at building a model for the Pf3 nucleoprotein complex. Implying in addition some similarities to the well-studied M13 complex, a plausible model could be constructed that is in accordance with the experimental data.
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