Bodmer-Glavas M, Edler K, Barberis A
Institute of Molecular Biology, University of Zurich, Winterthurerstrasse 190, CH-8057 Zurich, Switzerland.
Nucleic Acids Res. 2001 Nov 15;29(22):4570-80. doi: 10.1093/nar/29.22.4570.
Many transcription factors are multifunctional and also influence DNA replication. So far, their mechanism of action has remained elusive. Here we show that a DNA-binding protein could rely on the same biochemical activity that activates transcription to stimulate replication from the yeast chromosomal ARS1 origin. Unexpectedly, the ability to stimulate replication from this origin was not restricted to polymerase II transcription factors, but was a property shared by polymerase III factors. Furthermore, activation of replication did not depend on the process of transcription, but rather on the ability of DNA-binding transcription factors to remodel chromatin. The natural ARS1 activator Abf1 and the other transcription factors that stimulated replication remodeled chromatin in a very similar manner. Moreover, the presence of a histone H3 mutant that was previously shown to generally increase transcription also facilitated replication from ARS1 and partially compensated for the absence of a transcription factor. We propose that multifunctional transcription factors work by influencing the chromatin architecture at replication origins so as to generate a structure that is favorable to the initiation of replication.
许多转录因子具有多种功能,还会影响DNA复制。到目前为止,它们的作用机制仍不清楚。在此我们表明,一种DNA结合蛋白可以依赖激活转录的相同生化活性来刺激酵母染色体ARS1起始点的复制。出乎意料的是,刺激该起始点复制的能力并不局限于聚合酶II转录因子,而是聚合酶III因子共有的特性。此外,复制的激活并不依赖于转录过程,而是取决于DNA结合转录因子重塑染色质的能力。天然的ARS1激活因子Abf1和其他刺激复制的转录因子以非常相似的方式重塑染色质。此外,先前显示通常会增加转录的组蛋白H3突变体的存在也促进了ARS1的复制,并部分弥补了转录因子的缺失。我们提出,多功能转录因子通过影响复制起始点处的染色质结构起作用,从而产生有利于复制起始的结构。