Friedrich Miescher Institute for Biomedical Research, Maulbeerstrasse 66, 4058 Basel, Switzerland.
Nat Cell Biol. 2011 Jun 12;13(7):867-74. doi: 10.1038/ncb2263.
Budding yeast telomeres are reversibly bound at the nuclear envelope through two partially redundant pathways that involve the Sir2/3/4 silencing complex and the Yku70/80 heterodimer. To better understand how this is regulated, we studied the role of SUMOylation in telomere anchoring. We find that the PIAS-like SUMO E3 ligase Siz2 sumoylates both Yku70/80 and Sir4 in vivo and promotes telomere anchoring to the nuclear envelope. Remarkably, loss of Siz2 also provokes telomere extension in a telomerase-dependent manner that is epistatic with loss of the helicase Pif1. Consistent with our previously documented role for telomerase in anchorage, normal telomere anchoring in siz2 Δ is restored by PIF1 deletion. By live-cell imaging of a critically short telomere, we show that telomeres shift away from the nuclear envelope when elongating. We propose that SUMO-dependent association with the nuclear periphery restrains bound telomerase, whereas active elongation correlates with telomere release.
芽殖酵母端粒通过两条部分冗余的途径可逆地结合在核膜上,这两条途径涉及 Sir2/3/4 沉默复合物和 Yku70/80 异二聚体。为了更好地理解这是如何调节的,我们研究了 SUMO 化在端粒锚定中的作用。我们发现,类 PIAS 的 SUMO E3 连接酶 Siz2 在体内使 Yku70/80 和 Sir4 发生 SUMO 化,并促进端粒锚定到核膜。值得注意的是,Siz2 的缺失也以端粒酶依赖性的方式引发端粒延伸,这种方式与解旋酶 Pif1 的缺失是上位的。与我们之前记录的端粒酶在锚定中的作用一致,在 siz2 Δ 中,正常的端粒锚定通过 PIF1 缺失得到恢复。通过对一个关键短端粒的活细胞成像,我们表明端粒在伸长时会从核膜上转移。我们提出,与核周的 SUMO 依赖性关联限制了结合的端粒酶,而活跃的伸长与端粒的释放相关。