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Anomalous DNA binding by E2 regulatory protein driven by spacer sequence TATA
Authors:Zhiqun Xi  Yongli Zhang  Rashmi S Hegde  Zippora Shakked  Donald M Crothers
Institution:1.Department of Chemistry, 2.Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06511, 3.Division of Developmental Biology, Children’s Hospital Research Foundation, University of Cincinnati School of Medicine, 3333 Burnet Avenue, Cincinnati, OH 45229, USA and 4.Department of Structural Biology, Weizmann Institute of Science, Rehovot 76100, Israel
Abstract:We have investigated the anomalously weak binding of human papillomavirus (HPV) regulatory protein E2 to a DNA target containing the spacer sequence TATA. Experiments in magnesium (Mg2+) and calcium (Ca2+) ion buffers revealed a marked reduction in cutting by DNase I at the CpG sequence in the protein-binding site 3′ to the TATA spacer sequence, Studies of the cation dependence of DNA-E2 affinities showed that upon E2 binding the TATA sequence releases approximately twice as many Mg2+ ions as the average of the other spacer sequences. Binding experiments for TATA spacer relative to ATAT showed that in potassium ion (K+) the E2 affinity of the two sequences is nearly equal, but the relative dissociation constant (Kd) for TATA increases in the order K+ < Na+ < Ca2+ < Mg2+. Except for Mg2+, Kd for TATA relative to ATAT is independent of ion concentration, whereas for Mg2+ the affinity for TATA drops sharply as ion concentration increases. Thus, ions of increasing positive charge density increasingly distort the E2 binding site, weakening the affinity for protein. In the case of Mg2+, additional ions are bound to TATA that require displacement for protein binding. We suggest that the TATA sequence may bias the DNA structure towards a conformation that binds the protein relatively weakly.
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