Stone Michael D, Mihalusova Mariana, O'connor Catherine M, Prathapam Ramadevi, Collins Kathleen, Zhuang Xiaowei
Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, USA.
Nature. 2007 Mar 22;446(7134):458-61. doi: 10.1038/nature05600. Epub 2007 Feb 25.
Telomerase is an essential cellular ribonucleoprotein (RNP) that solves the end replication problem and maintains chromosome stability by adding telomeric DNA to the termini of linear chromosomes. Genetic mutations that abrogate the normal assembly of telomerase RNP cause human disease. It is therefore of fundamental and medical importance to decipher cellular strategies for telomerase biogenesis, which will require new insights into how specific interactions occur in a precise order along the RNP assembly pathway. Here we use a single-molecule approach to dissect the individual assembly steps of telomerase. Direct observation of complex formation in real time revealed two sequential steps of protein-induced RNA folding, establishing a hierarchical RNP assembly mechanism: interaction with the telomerase holoenzyme protein p65 induces structural rearrangement of telomerase RNA, which in turn directs the binding of the telomerase reverse transcriptase to form the functional ternary complex. This hierarchical assembly process is facilitated by an evolutionarily conserved structural motif within the RNA. These results identify the RNA folding pathway during telomerase biogenesis and define the mechanism of action for an essential telomerase holoenzyme protein.
端粒酶是一种重要的细胞核糖核蛋白(RNP),它通过将端粒DNA添加到线性染色体末端来解决末端复制问题并维持染色体稳定性。消除端粒酶RNP正常组装的基因突变会导致人类疾病。因此,破译端粒酶生物合成的细胞策略具有根本和医学重要性,这需要对特定相互作用如何沿着RNP组装途径以精确顺序发生有新的见解。在这里,我们使用单分子方法剖析端粒酶的各个组装步骤。实时直接观察复合物形成揭示了蛋白质诱导的RNA折叠的两个连续步骤,建立了分层的RNP组装机制:与端粒酶全酶蛋白p65相互作用诱导端粒酶RNA的结构重排,这反过来又指导端粒酶逆转录酶的结合以形成功能性三元复合物。RNA中进化保守的结构基序促进了这种分层组装过程。这些结果确定了端粒酶生物合成过程中的RNA折叠途径,并定义了一种必需的端粒酶全酶蛋白的作用机制。