Chappell Andrew S, Lundblad Victoria
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.
Mol Cell Biol. 2004 Sep;24(17):7720-36. doi: 10.1128/MCB.24.17.7720-7736.2004.
Telomere synthesis in most organisms depends on the action of the telomerase enzyme, which contains an RNA subunit that is stably associated with the reverse transcriptase subunit as well as additional telomerase proteins. In the budding yeast Saccharomyces cerevisiae, several structural domains that are responsible for mediating protein interactions with the telomerase RNA TLC1 have been identified. We report here the identification and characterization of a TLC1 stem-loop that is required for its interaction with the Est2 reverse transcriptase protein. This hairpin, which does not contain any bulges in the duplex stem that commonly mediate protein-RNA interaction, appears to be a part of a larger structure, as nucleotides immediately to either side of this stem-loop contribute to the interaction of TLC1 with the Est2 protein. Surprisingly, replacement of a 95-nucleotide region of the yeast telomerase RNA that is required for Est2 interaction with a 39-nucleotide pseudoknot from a distantly related telomerase RNA results in a functional telomerase enzyme. These findings suggest that the ability of the budding yeast reverse transcriptase to associate with the telomerase RNA depends on a highly structured region rather than specific sequence elements.
大多数生物体中的端粒合成依赖于端粒酶的作用,端粒酶含有一个RNA亚基,该亚基与逆转录酶亚基以及其他端粒酶蛋白稳定结合。在芽殖酵母酿酒酵母中,已经鉴定出几个负责介导蛋白质与端粒酶RNA TLC1相互作用的结构域。我们在此报告了一个TLC1茎环的鉴定和特征,它是TLC1与Est2逆转录酶蛋白相互作用所必需的。这个发夹结构在通常介导蛋白质-RNA相互作用的双链茎中不包含任何凸起,它似乎是一个更大结构的一部分,因为这个茎环两侧紧邻的核苷酸有助于TLC1与Est2蛋白的相互作用。令人惊讶的是,将酵母端粒酶RNA中与Est2相互作用所需的95个核苷酸区域替换为来自远缘端粒酶RNA的39个核苷酸假结,会产生一种功能性的端粒酶。这些发现表明,芽殖酵母逆转录酶与端粒酶RNA结合的能力取决于一个高度结构化的区域,而不是特定的序列元件。