Institute of Medical Sciences, University of Aberdeen, Aberdeen, Scotland, United Kingdom.
Mol Biol Cell. 2012 Jul;23(14):2741-54. doi: 10.1091/mbc.E11-04-0365. Epub 2012 Apr 11.
Chromatin function requires specific three-dimensional architectures of chromosomes. We investigated whether Saccharomyces cerevisiae extra TFIIIC (ETC) sites, which bind the TFIIIC transcription factor but do not recruit RNA polymerase III, show specific intranuclear positioning. We show that six of the eight known S. cerevisiae ETC sites localize predominantly at the nuclear periphery, and that ETC sites retain their tethering function when moved to a new chromosomal location. Several lines of evidence indicate that TFIIIC is central to the ETC peripheral localization mechanism. Mutating or deleting the TFIIIC-binding consensus ablated ETC -site peripheral positioning, and inducing degradation of the TFIIIC subunit Tfc3 led to rapid release of an ETC site from the nuclear periphery. We find, moreover, that anchoring one TFIIIC subunit at an ectopic chromosomal site causes recruitment of others and drives peripheral tethering. Localization of ETC sites at the nuclear periphery also requires Mps3, a Sad1-UNC-84-domain protein that spans the inner nuclear membrane. Surprisingly, we find that the chromatin barrier and insulator functions of an ETC site do not depend on correct peripheral localization. In summary, TFIIIC and Mps3 together direct the intranuclear positioning of a new class of S. cerevisiae genomic loci positioned at the nuclear periphery.
染色质的功能需要染色体特定的三维结构。我们研究了酿酒酵母额外的转录因子 IIIIC(ETC)结合转录因子 IIIIC 的位点是否表现出特定的核内定位。我们发现,已知的 8 个酿酒酵母 ETC 位点中的 6 个主要定位于核周,并且当 ETC 位点被移动到新的染色体位置时,它们仍然保留其固定功能。有几条证据表明,TFIIIC 是 ETC 外周定位机制的核心。突变或删除 TFIIIC 结合的保守序列会消除 ETC 位点的外周定位,并且诱导 TFIIIC 亚基 Tfc3 的降解会导致 ETC 位点从核周迅速释放。此外,我们发现将一个 TFIIIC 亚基锚定在异位染色体位点会引起其他亚基的募集,并驱动外周固定。ETC 位点在核周的定位还需要跨核内膜的 Sad1-UNC-84 结构域蛋白 Mps3。令人惊讶的是,我们发现 ETC 位点的染色质屏障和绝缘子功能不依赖于正确的外周定位。总之,TFIIIC 和 Mps3 共同指导一类新的酿酒酵母基因组位点在核周的核内定位。