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沉默蛋白Sir2p和Sir3p的过度激活会导致染色体丢失。

Hyperactivation of the silencing proteins, Sir2p and Sir3p, causes chromosome loss.

作者信息

Holmes S G, Rose A B, Steuerle K, Saez E, Sayegh S, Lee Y M, Broach J R

机构信息

Department of Molecular Biology, Princeton University, New Jersey 08544, USA.

出版信息

Genetics. 1997 Mar;145(3):605-14. doi: 10.1093/genetics/145.3.605.

Abstract

The SIRgene products maintain transcriptional repression at the silent mating type loci and telomeres in Saccharomyces cerevisiae, although no enzymatic or structural activity has been assigned to any of the Sir proteins nor has the role of any of these proteins in transcriptional silencing been clearly defined. We have investigated the functions and interactions of the Sir2, Sir3, and Sir4 proteins by overexpressing them in yeast cells. We find that Sir2p and Sir3p are toxic when overexpressed, while high Sir4p levels have no toxic effect. Epistasis experiments indicate that Sir2p-induced toxicity is diminished in strains lacking the SIR3 gene, while both Sir2p and Sir4p are required for Sir3p to manifest its full toxic effect. In addition, the effects of Sir2 or Sir3 overexpression are exacerbated by specific mutations in the N-terminus of the histone H4 gene. These results are consistent with a model in which Sir2p, Sir3p and Sir4p function as a complex and interact with histones to modify chromatin structure. We find no evidence that toxicity from high levels of the Sir proteins results from widespread repression of transcription. Instead, we find that high levels of Sir2p and/or Sir3p cause a profound decrease in chromosome stability. These results can be appreciated in the context of the effects of Sir2p in histone acetylation and of chromatin structure on chromosome stability.

摘要

SIR基因产物在酿酒酵母的沉默交配型位点和端粒维持转录抑制,尽管尚未赋予任何Sir蛋白酶活性或结构活性,且这些蛋白在转录沉默中的作用也未明确界定。我们通过在酵母细胞中过表达Sir2、Sir3和Sir4蛋白来研究它们的功能和相互作用。我们发现,Sir2p和Sir3p过表达时具有毒性,而高水平的Sir4p则没有毒性作用。上位性实验表明,在缺乏SIR3基因的菌株中,Sir2p诱导的毒性减弱,而Sir3p要表现出其全部毒性作用则需要Sir2p和Sir4p。此外,组蛋白H4基因N端的特定突变会加剧Sir2或Sir3过表达的影响。这些结果与一个模型一致,即Sir2p、Sir3p和Sir4p作为一个复合体发挥作用,并与组蛋白相互作用以改变染色质结构。我们没有发现证据表明高水平的Sir蛋白产生的毒性是由转录的广泛抑制导致的。相反,我们发现高水平的Sir2p和/或Sir3p会导致染色体稳定性显著下降。在Sir2p对组蛋白乙酰化的影响以及染色质结构对染色体稳定性的影响的背景下,可以理解这些结果。

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