【2h】

The Budding Yeast Nucleus

机译:酵母酵母核

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摘要

The budding yeast nucleus, like those of other eukaryotic species, is highly organized with respect to both chromosomal sequences and enzymatic activities. At the nuclear periphery interactions of nuclear pores with chromatin, mRNA, and transport factors promote efficient gene expression, whereas centromeres, telomeres, and silent chromatin are clustered and anchored away from pores. Internal nuclear organization appears to be function-dependent, reflecting localized sites for tRNA transcription, rDNA transcription, ribosome assembly, and DNA repair. Recent advances have identified new proteins involved in the positioning of chromatin and have allowed testing of the functional role of higher-order chromatin organization. The unequal distribution of silent information regulatory factors and histone modifying enzymes, which arises in part from the juxtaposition of telomeric repeats, has been shown to influence chromatin-mediated transcriptional repression. Other localization events suppress unwanted recombination. These findings highlight the contribution budding yeast genetics and cytology have made to dissecting the functional role of nuclear structure.
机译:与其他真核物种一样,发芽的酵母核在染色体序列和酶促活性方面都高度组织化。在核外围,核孔与染色质,mRNA和转运因子的相互作用促进了有效的基因表达,而着丝粒,端粒和沉默染色质聚集并锚定远离孔。内部核组织似乎是功能依赖性的,反映了tRNA转录,rDNA转录,核糖体装配和DNA修复的定位位点。最近的进展已经确定了涉及染色质定位的新蛋白质,并允许测试高级染色质组织的功能。沉默信息调节因子和组蛋白修饰酶的不均等分布,其部分原因是端粒重复序列的并置,已表明会影响染色质介导的转录抑制。其他本地化事件会抑制不必要的重组。这些发现突出了发芽的酵母遗传学和细胞学对解剖核结构功能作用的贡献。

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