Remboutsika E, Kohlhaw G B
Department of Biochemistry, Purdue University, West Lafayette, Indiana 47907.
Mol Cell Biol. 1994 Aug;14(8):5547-57. doi: 10.1128/mcb.14.8.5547-5557.1994.
The Leu3 protein (Leu3p) of Saccharomyces cerevisiae is a pleiotropic transregulator that can function both as an activator and as a repressor of transcription. It binds to upstream promoter elements (UASLEU) with the consensus sequence 5'-GCCGGNNCCGGC-3'. The DNA-binding motif of Leu3p belongs to the family of Zn(II)2-Cys6 clusters. The motif is located between amino acid residues 37 and 67 of the 886-residue protein. In this study, we used a recombinant peptide consisting of residues 17 to 147 to explore the interaction between Leu3p and its cognate DNA. We found that the Leu3p(17-147) peptide is a monomer in the absence of UASLEU but assumes a dimeric structure when the DNA is present. Results of protein-DNA cross-linking and methylation and ethylation interference footprinting experiments show that the Leu3p(17-147) dimer interacts symmetrically with two contact triplets separated by 6 bp and suggest that the peptide approaches its target DNA in such a way that each subunit is positioned closer to one DNA strand than to the other. The binding of Leu3p is strongly affected by the spacing between the contact triplets of the UASLEU and by the type of triplet. Binding occurs when the triplets are 6 bp apart (normal spacing) but fails to occur when the triplets are 0, 5, or 8 bp apart. Weak binding occurs when the triplets are 7 bp apart. Binding does not occur when the UASLEU triplets (GCC....GGC) are replaced with triplets found in the UAS elements for Gal4p, Put3p, and Ppr1p (CGG....CCG). The apparent Kd for the normal Leu3p(17-147)-UASLEU complex is about 3 nM. A mutant form of Leu3p(17-147) in which the histidine at position 50 has been replaced with cysteine binds UASLEU with significantly greater affinity (apparent Kd of about 0.7 nM), even though the interaction between the mutant peptide and target DNA appears to be unchanged. Interestingly, repression of basal-level transcription, which is a hallmark property of the wild-type Leu3p(17-147) peptide, is largely lost with the mutant peptide, indicating that there is no direct correlation between strength of binding and repression.
酿酒酵母的亮氨酸3蛋白(Leu3p)是一种多效性反式调节因子,可作为转录激活因子和转录抑制因子发挥作用。它与上游启动子元件(UASLEU)结合,其共有序列为5'-GCCGGNNCCGGC-3'。Leu3p的DNA结合基序属于Zn(II)2-Cys6簇家族。该基序位于886个氨基酸残基的蛋白质的第37至67个氨基酸残基之间。在本研究中,我们使用了由第17至147个氨基酸残基组成的重组肽来探索Leu3p与其同源DNA之间的相互作用。我们发现,Leu3p(17-147)肽在没有UASLEU时是单体,但在有DNA存在时会形成二聚体结构。蛋白质-DNA交联、甲基化和乙基化干扰足迹实验结果表明,Leu3p(17-147)二聚体与两个由6个碱基对隔开的接触三联体对称相互作用,并表明该肽接近其靶DNA的方式是每个亚基与一条DNA链的距离比与另一条链的距离更近。Leu3p的结合受到UASLEU接触三联体之间的间距以及三联体类型的强烈影响。当三联体相距6个碱基对(正常间距)时发生结合,但当三联体相距0、5或8个碱基对时不发生结合。当三联体相距7个碱基对时发生弱结合。当UASLEU三联体(GCC....GGC)被Gal4p、Put3p和Ppr1p的UAS元件中发现的三联体(CGG....CCG)取代时不发生结合。正常的Leu3p(17-147)-UASLEU复合物的表观解离常数约为3 nM。一种Leu3p(17-147)的突变形式,其中第50位的组氨酸被半胱氨酸取代,与UASLEU的结合亲和力显著更高(表观解离常数约为0.7 nM),尽管突变肽与靶DNA之间的相互作用似乎没有改变。有趣的是,野生型Leu3p(17-147)肽的一个标志性特性即基础水平转录的抑制作用,在突变肽中基本丧失,这表明结合强度与抑制作用之间没有直接关联。