Sang B C, Gray D M
Program in Molecular Biology, University of Texas at Dallas, Richardson 75083-0688.
Biochemistry. 1987 Nov 17;26(23):7210-4. doi: 10.1021/bi00397a002.
Circular dichroism (CD) data indicated that fd gene 5 protein (G5P) formed complexes with double-stranded poly(dA.dT) and poly[d(A-T).d(A-T)]. CD spectra of both polymers at wavelengths above 255 nm were altered upon protein binding. These spectral changes differed from those caused by strand separation. In addition, the tyrosyl 228-nm CD band of G5P decreased more than 65% upon binding of the protein to these double-stranded polymers. This reduction was significantly greater than that observed for binding to single-stranded poly(dA), poly(dT), and poly[d(A-T)] but was similar to that observed for binding of the protein to double-stranded RNA [Gray, C.W., Page, G.A., & Gray, D.M. (1984) J. Mol. Biol. 175, 553-559]. The decrease in melting temperature caused by the protein was twice as great for poly[d(A-T).d(A-T)] as for poly(dA.dT) in 5 mM tris(hydroxymethyl)aminomethane hydrochloride (Tris-HCl), pH 7. Upon heat denaturation of the poly(dA.dT)-G5P complex, CD spectra showed that single-stranded poly(dA) and poly(dT) formed complexes with the protein. The binding of gene 5 protein lowered the melting temperature of poly(dA.dT) by 10 degrees C in 5 mM Tris-HCl, pH 7, but after reducing the binding to the double-stranded form of the polymer by the addition of 0.1 M Na+, the melting temperature was lowered by approximately 30 degrees C. Since increasing the salt concentration decreases the affinity of G5P for the poly(dA) and poly(dT) single strands and increases the stability of the double-stranded polymer, the ability of the gene 5 protein to destabilize poly(dA.dT) appeared to be significantly affected by its binding to the double-stranded form of the polymer.
圆二色性(CD)数据表明,fd基因5蛋白(G5P)与双链聚(dA.dT)和聚[d(A-T).d(A-T)]形成复合物。在高于255nm波长处,两种聚合物的CD光谱在蛋白质结合后发生改变。这些光谱变化不同于由链分离引起的变化。此外,G5P的酪氨酸228nm CD带在蛋白质与这些双链聚合物结合后下降超过65%。这种下降明显大于蛋白质与单链聚(dA)、聚(dT)和聚[d(A-T)]结合时观察到的下降,但与蛋白质与双链RNA结合时观察到的下降相似[格雷,C.W.,佩奇,G.A.,&格雷,D.M.(1984年)《分子生物学杂志》175卷,553 - 559页]。在5mM三(羟甲基)氨基甲烷盐酸盐(Tris-HCl),pH7条件下,蛋白质导致的聚[d(A-T).d(A-T)]熔解温度下降幅度是聚(dA.dT)的两倍。聚(dA.dT)-G5P复合物热变性时,CD光谱显示单链聚(dA)和聚(dT)与蛋白质形成复合物。在5mM Tris-HCl,pH7条件下,基因5蛋白的结合使聚(dA.dT)的熔解温度降低了10℃,但在加入0.1M Na + 降低其与聚合物双链形式的结合后,熔解温度降低了约30℃。由于增加盐浓度会降低G5P对聚(dA)和聚(dT)单链的亲和力并增加双链聚合物的稳定性,基因5蛋白使聚(dA.dT)不稳定的能力似乎受到其与聚合物双链形式结合的显著影响。