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Telomeric G-quadruplexes are a substrate and site of localization for human telomerase
被引:0
|作者:
Aaron L. Moye
Karina C. Porter
Scott B. Cohen
Tram Phan
Katherine G. Zyner
Natsuki Sasaki
George O. Lovrecz
Jennifer L. Beck
Tracy M. Bryan
机构:
[1] Children’s Medical Research Institute,
[2] University of Sydney,undefined
[3] Commonwealth Scientific and Industrial Research Organisation,undefined
[4] Manufacturing Flagship,undefined
[5] School of Chemistry,undefined
[6] University of Wollongong,undefined
[7] Northfields Avenue,undefined
[8] Wollongong,undefined
[9] New South Wales 2522,undefined
[10] Australia,undefined
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It has been hypothesized that G-quadruplexes can sequester the 3′ end of the telomere and prevent it from being extended by telomerase. Here we purify and characterize stable, conformationally homogenous human telomeric G-quadruplexes, and demonstrate that human telomerase is able to extend parallel, intermolecular conformations in vitro. These G-quadruplexes align correctly with the RNA template of telomerase, demonstrating that at least partial G-quadruplex resolution is required. A highly purified preparation of human telomerase retains this extension ability, establishing that the core telomerase enzyme complex is sufficient for partial G-quadruplex resolution and extension. The parallel-specific G-quadruplex ligand N-methyl mesoporphyrin IX (NMM) causes an increase in telomeric G-quadruplexes, and we show that telomerase colocalizes with a subset of telomeric G-quadruplexes in vivo. The ability of telomerase to partially unwind, extend and localize to these structures implies that parallel telomeric G-quadruplexes may play an important biological role.
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