Lowell J E, Pillus L
Department of Molecular, Cellular, and Development Biology, University of Colorado, Boulder 80309-0347, USA.
Cell Mol Life Sci. 1998 Jan;54(1):32-49. doi: 10.1007/s000180050123.
Unusual chromatin structures underlie epigenetic effects at the silent mating-type loci and telomeres in yeast. Many of the same genes appear to function in transcriptional silencing observed at both the silent mating-type loci and at telomeres. The observation that these loci are united by a requirement for shared factors suggests that the structure of chromatin at these regions is similar. Alteration of telomeric chromatin components affects regulation of transcription, telomeric length, recombination and chromosomal stability. Mutations in TLC1 and EST2, which both encode components of telomerase, cause identical phenotypes: progressive shortening of telomeric DNA, increased chromosome loss and eventually cell death. In this review, we examine the relationship between telomeric chromatin and telomere replication and discuss the possibility that telomerase itself is an integral part of telomeric chromatin structure.
异常的染色质结构是酵母中沉默交配型基因座和端粒处表观遗传效应的基础。许多相同的基因似乎在沉默交配型基因座和端粒处观察到的转录沉默中发挥作用。这些基因座因对共享因子的需求而统一,这一观察结果表明这些区域的染色质结构相似。端粒染色质成分的改变会影响转录调控、端粒长度、重组和染色体稳定性。TLC1和EST2都编码端粒酶的成分,它们的突变会导致相同的表型:端粒DNA逐渐缩短、染色体丢失增加并最终导致细胞死亡。在这篇综述中,我们研究了端粒染色质与端粒复制之间的关系,并讨论了端粒酶本身是端粒染色质结构不可或缺的一部分的可能性。