Wolner B S, Gralla J D
Department of Chemistry and Biochemistry and the Molecular Biology Institute, UCLA, Los Angeles, California 90095-1569, USA.
J Biol Chem. 2001 Mar 2;276(9):6260-6. doi: 10.1074/jbc.M008273200. Epub 2000 Nov 28.
The kinetics of TATA-binding protein (TBP) and TFIIB binding were measured on a series of promoter constructs that had varying sequences within and flanking the TATA box. The flanking sequences were found to influence TBP stability even though they do not contact the protein. This occurs by altering the decay rate rather than the association rate. TFIIB association is accompanied by protein-protein cooperativity as indicated by the simultaneous release of both proteins in challenge experiments. The sequence of the TATA box and the sequences that flank it can influence the kinetics of the TFIIB.TBP.DNA complex. TFIIB can contribute to tighter TATA binding in two ways. It always slows the decay rate of TBP, but it can also increase the rate of association at promoters with certain combinations of TATA and flanking sequences. The results imply that the interplay between the TATA box and flanking elements leads to variations in the kinetics of preinitiation complex formation that may account for the observed effects of all of these diverse sequences on transcription.
在一系列启动子构建体上测量了TATA结合蛋白(TBP)和TFIIB结合的动力学,这些构建体在TATA框内部和侧翼具有不同的序列。发现侧翼序列会影响TBP的稳定性,尽管它们不与蛋白质接触。这是通过改变衰变率而不是缔合率来实现的。如在挑战实验中两种蛋白质同时释放所表明的,TFIIB缔合伴随着蛋白质 - 蛋白质协同作用。TATA框的序列及其侧翼序列可以影响TFIIB.TBP.DNA复合物的动力学。TFIIB可以通过两种方式促成更紧密的TATA结合。它总是会减慢TBP的衰变率,但它也可以增加具有特定TATA和侧翼序列组合的启动子处的缔合率。结果表明,TATA框和侧翼元件之间的相互作用导致起始前复合物形成动力学的变化,这可能解释了所有这些不同序列对转录的观察到的影响。