Li B, Oestreich S, de Lange T
The Rockefeller University, New York, New York 10021, USA.
Cell. 2000 May 26;101(5):471-83. doi: 10.1016/s0092-8674(00)80858-2.
It has been puzzling that mammalian telomeric proteins, including TRF1, TRF2, tankyrase, and TIN2 have no recognized orthologs in budding yeast. Here, we describe a human protein, hRap1, that is an ortholog of the yeast telomeric protein, scRap1p. hRap1 has three conserved sequence motifs in common with scRap1, is located at telomeres, and affects telomere length. However, while scRap1 binds telomeric DNA directly, hRap1 is recruited to telomeres by TRF2. Extending the comparison of telomeric proteins to fission yeast, we identify S. pombe Taz1 as a TRF ortholog, indicating that TRFs are conserved at eukaryotic telomeres. The data suggest that ancestral telomeres, like those of vertebrates, contained a TRF-like protein as well as Rap1. We propose that budding yeast preserved Rap1 at telomeres but lost the TRF component, possibly concomitant with a change in the telomeric repeat sequence.
哺乳动物的端粒蛋白,包括TRF1、TRF2、端粒酶和TIN2,在芽殖酵母中没有公认的直系同源物,这一点一直令人困惑。在此,我们描述了一种人类蛋白hRap1,它是酵母端粒蛋白scRap1p的直系同源物。hRap1与scRap1有三个共同的保守序列基序,位于端粒处,并影响端粒长度。然而,虽然scRap1直接结合端粒DNA,但hRap1是由TRF2招募到端粒的。将端粒蛋白的比较扩展到裂殖酵母,我们确定粟酒裂殖酵母Taz1是TRF的直系同源物,这表明TRF在真核生物端粒中是保守的。数据表明,像脊椎动物的端粒一样,祖先端粒包含一种TRF样蛋白以及Rap1。我们提出,芽殖酵母在端粒处保留了Rap1,但失去了TRF成分,这可能与端粒重复序列的变化同时发生。