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噬菌体SPO1编码的II型DNA结合蛋白TF1中二级结构稳定性与DNA结合亲和力的相互关系

Interrelations of secondary structure stability and DNA-binding affinity in the bacteriophage SPO1-encoded type II DNA-binding protein TF1.

作者信息

Andera L, Spangler C J, Galeone A, Mayol L, Geiduschek E P

机构信息

Department of Biology, University of California, San Diego, La Jolla 92093-0634.

出版信息

J Mol Biol. 1994 Feb 11;236(1):139-50. doi: 10.1006/jmbi.1994.1124.

Abstract

TF1, a homodimeric DNA-binding and -bending protein with a preference for hydroxymethyluracil-containing DNA is the Bacillus subtilis-encoded homolog of the bacterial HU proteins and of the E. coli integration host factor. A temperature-sensitive mutation at amino acid 25 of TF1 (L25-->A) and two intragenic second site revertants at amino acids 15 (E15-->G) and 32 (L32-->I) were previously identified and their effects on virus development were examined. The DNA-binding properties of these proteins and the thermal stability of their secondary structures have now been analyzed. Amino acids 15 and 32 are far removed from the putative DNA-binding domains of TF1 but changes there exert striking effects on DNA affinity that correlate with effects on structure. The double mutant protein TF1-G15I32 binds to a preferred site in hydroxymethyluracil-containing DNA 40 times more tightly, denatures at higher temperature (delta tm = 21 degrees C), and also exchanges subunits much more slowly than does the wild-type protein. The L25-->A mutation makes TF1 secondary structure and DNA-binding highly salt concentration-dependent. The E15-->G mutation partly suppresses this effect: secondary structure of TF1-A25G15 is restored at 21 degrees C by 1 M NaCl or, at low NaCl concentration, by binding to DNA.

摘要

TF1是一种同源二聚体DNA结合和弯曲蛋白,对含羟甲基尿嘧啶的DNA有偏好,它是枯草芽孢杆菌编码的细菌HU蛋白和大肠杆菌整合宿主因子的同源物。先前已鉴定出TF1第25位氨基酸(L25→A)的温度敏感突变以及第15位(E15→G)和第32位(L32→I)的两个基因内第二位点回复突变,并研究了它们对病毒发育的影响。现在已经分析了这些蛋白质的DNA结合特性及其二级结构的热稳定性。第15位和第32位氨基酸与TF1假定的DNA结合结构域相距甚远,但那里的变化对DNA亲和力产生显著影响,这与对结构的影响相关。双突变蛋白TF1-G15I32与含羟甲基尿嘧啶的DNA中一个优选位点的结合紧密程度比野生型蛋白高40倍,在更高温度下变性(Δtm = 21℃),并且亚基交换也比野生型蛋白慢得多。L25→A突变使TF1的二级结构和DNA结合高度依赖于盐浓度。E15→G突变部分抑制了这种效应:TF1-A25G15的二级结构在21℃下通过1 M NaCl恢复,或者在低NaCl浓度下通过与DNA结合恢复。

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