McStay B, Frazier M W, Reeder R H
Basic Sciences Division, Hutchinson Cancer Research Center, Seattle, Washington 98104.
Genes Dev. 1991 Nov;5(11):1957-68. doi: 10.1101/gad.5.11.1957.
Xenopus laevis upstream binding factor (xUBF) is an RNA polymerase I transcription factor that is required for formation of the stable initiation complex. The 701-amino-acid protein contains three regions of homology to the chromosomal protein HMG1 (the HMG boxes), which act in comparative independence to cause DNA binding. DNA binding is augmented by a 102-residue amino-terminal domain that causes xUBF to form dimers. The dimerization domain is bipartite in structure, consisting of two regions with the potential to form amphipathic helices, separated by a gap of at least 22 amino acids. The carboxyl half of xUBF is relatively dispensable for transcription (including an 87-residue acidic tail). However, either altering the number of HMG boxes or interfering with dimerization eliminates transcription. The gap region of the dimerization domain is dispensable for dimerization but is absolutely required for transcription. This suggests that the gap region has a critical function in transcription distinct from any effect on dimerization or DNA binding.
非洲爪蟾上游结合因子(xUBF)是一种RNA聚合酶I转录因子,是形成稳定起始复合物所必需的。这种701个氨基酸的蛋白质含有与染色体蛋白HMG1同源的三个区域(HMG框),它们相对独立地发挥作用以实现DNA结合。一个由102个残基组成的氨基末端结构域增强了DNA结合,该结构域使xUBF形成二聚体。二聚化结构域在结构上是二分的,由两个有潜力形成两亲性螺旋的区域组成,中间相隔至少22个氨基酸。xUBF的羧基末端对于转录相对来说是可有可无的(包括一个87个残基的酸性尾巴)。然而,改变HMG框的数量或干扰二聚化都会消除转录。二聚化结构域的间隔区域对于二聚化是可有可无的,但对于转录却是绝对必需的。这表明间隔区域在转录中具有关键功能,与对二聚化或DNA结合的任何影响都不同。