Department of Biology, McMaster University, Hamilton, Ontario L8S 4K1, Canada.
Sci Rep. 2016 Nov 14;6:36913. doi: 10.1038/srep36913.
TRF1, a component of the shelterin complex, plays a key role in both telomerase-dependent telomere maintenance and alternative lengthening of telomeres, the latter also known as ALT. Characteristics of ALT cells include C-circles and ALT-associated PML bodies, referred to as APBs. The function of TRF1 is tightly regulated by post-translational modification including phosphorylation, however TRF1 phosphorylation sites have yet to be fully characterized. Here we report a novel TRF1 phosphorylation site threonine 271. We show that a nonphosphorylatable mutation of T271A impairs TRF1 binding to telomeric DNA in vivo and renders TRF1 defective in inhibiting telomerase-dependent telomere elongation. On the other hand, TRF1 carrying a phosphomimic mutation of T271D is competent in not only binding to telomeric DNA but also inhibiting telomerase-mediated telomere lengthening. These results suggest that TRF1 phosphorylation on T271 negatively regulates telomerase-mediated telomere maintenance. We find that in telomerase-negative ALT cells, TRF1 carrying either a T271A or T271D mutation is able to promote C-circle production but fails to support APB formation. These results suggest that TRF1 phosphorylation on T271 is necessary for APB formation but dispensable for C-circle production. These results further imply that APB formation can be mechanistically separated from C-circle production.
端粒结合因子 1(TRF1)是庇护体复合物的一个组成部分,在端粒酶依赖性的端粒维持和端粒的替代性延长(后者也称为 ALT)中起着关键作用。ALT 细胞的特征包括 C-环和与 ALT 相关的 PML 体,称为 APB。TRF1 的功能受到包括磷酸化在内的翻译后修饰的严格调控,然而,TRF1 的磷酸化位点尚未得到充分表征。在这里,我们报告了一个新的 TRF1 磷酸化位点苏氨酸 271。我们表明,T271A 的非磷酸化突变会损害 TRF1 在体内与端粒 DNA 的结合,并使 TRF1 无法抑制端粒酶依赖性的端粒延长。另一方面,携带 T271D 磷酸模拟突变的 TRF1 不仅能够结合端粒 DNA,而且能够抑制端粒酶介导的端粒延长。这些结果表明,TRF1 在 T271 上的磷酸化负调节端粒酶介导的端粒维持。我们发现,在端粒酶阴性的 ALT 细胞中,携带 T271A 或 T271D 突变的 TRF1 能够促进 C-环的产生,但不能支持 APB 的形成。这些结果表明,TRF1 在 T271 上的磷酸化对于 APB 的形成是必要的,但对于 C-环的产生是可有可无的。这些结果进一步表明,APB 的形成可以在机制上与 C-环的产生分离。