Yokono M, Saegusa N, Matsushita K, Sugiura Y
Institute for Chemical Research, Kyoto University, Japan.
Biochemistry. 1998 May 12;37(19):6824-32. doi: 10.1021/bi9727646.
Transcription factor Sp1 has three tandem repeats of a Cys2His2-type zinc finger motif and specifically binds to GC box DNA. Although the DNA binding mode of the three zinc fingers of Sp1 is predicted to be similar to that of Zif268, this model does not explain the DNA binding property of the N-terminal zinc finger (finger 1). To understand the DNA recognition mode of Sp1, we have performed detailed analyses for the contribution of finger 1 to the high-affinity binding to the GC box DNA and for the interaction mechanism between finger 1 and DNA. Results of electrophoretic analyses using finger-deleted mutants of Sp1 and GC box mutants in the finger-contacting subsite demonstrate that the contribution of finger 1 to the total DNA binding affinity is lower than that of the C-terminal finger 3 but is dispensable for the high-affinity binding. The DNA sequence selectivity of finger 1 at the 3'-portion of the GC box is lower than that of fingers 2 and 3 at the 5'-portion. Alanine scanning mutagenesis in the alpha-helix of finger 1 reveals that Lys-1 immediately preceding the helix is important for the recognition of the two guanine bases, but other putative key amino acids do not affect the DNA binding. These results demonstrate that (1) the contribution of finger 1 to the DNA binding affinity and the sequence selectivity of Sp1 is smaller than that of fingers 2 and 3 and (2) the interaction mechanism between finger 1 and DNA is different from the Zif268 model. DNA interaction of Sp1 finger 1 has also been discussed in connection with that of TFIIIA or WT1.
转录因子Sp1具有三个串联重复的Cys2His2型锌指基序,并能特异性结合GC盒DNA。尽管预测Sp1的三个锌指的DNA结合模式与Zif268相似,但该模型无法解释N端锌指(锌指1)的DNA结合特性。为了了解Sp1的DNA识别模式,我们对锌指1对与GC盒DNA的高亲和力结合的贡献以及锌指1与DNA之间的相互作用机制进行了详细分析。使用Sp1的锌指缺失突变体和锌指接触亚位点中的GC盒突变体进行的电泳分析结果表明,锌指1对总DNA结合亲和力的贡献低于C端锌指3,但对于高亲和力结合是必不可少的。锌指1在GC盒3'端的DNA序列选择性低于锌指2和3在5'端的选择性。对锌指1的α-螺旋进行丙氨酸扫描诱变发现,螺旋前紧邻的赖氨酸对识别两个鸟嘌呤碱基很重要,但其他假定的关键氨基酸不影响DNA结合。这些结果表明:(1)锌指1对Sp1的DNA结合亲和力和序列选择性的贡献小于锌指2和3;(2)锌指1与DNA之间的相互作用机制不同于Zif268模型。还结合TFIIIA或WT1的情况讨论了Sp1锌指1的DNA相互作用。