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Proceedings of the National Academy of Sciences of the United States of America|July 27, 2005
Human POT1 disrupts telomeric G-quadruplexes allowing telomerase extension in vitroArthur J Zaug, Elaine R Podell, Thomas R CechNature Structural & Molecular Biology|February 8, 2006
Crystal structure of the essential N-terminal domain of telomerase reverse transcriptaseSteven A Jacobs, Elaine R Podell, Thomas R CechNature Structural & Molecular Biology|July 22, 2008
Mutation in TERT separates processivity from anchor-site functionArthur J Zaug, Elaine R Podell, Thomas R CechBrain Sciences|March 29, 2023
Temporal Stability of the Dynamic Resting-State Functional Brain Network: Current Measures, Clinical Research Progress, and Future PerspectivesYicheng Long, Xiawei Liu, Zhening LiuCell|August 16, 2016
Live Cell Imaging Reveals the Dynamics of Telomerase Recruitment to TelomeresJens C Schmidt, Arthur J Zaug, Thomas R CechMolecular and Cellular Biology|August 18, 2010
Tetrahymena telomerase protein p65 induces conformational changes throughout telomerase RNA (TER) and rescues telomerase reverse transcriptase and TER assembly mutantsAndrea J Berman, Anne R Gooding, Thomas R CechMolecular and Cellular Biology|April 16, 2008
Multiple yeast genes, including Paf1 complex genes, affect telomere length via telomerase RNA abundanceAmy D Mozdy, Elaine R Podell, Thomas R CechElife|October 2, 2014
Identification of human TERT elements necessary for telomerase recruitment to telomeresJens C Schmidt, Andrew B Dalby, Thomas R CechMolecular and Cellular Biology|March 9, 2002
Essential regions of Saccharomyces cerevisiae telomerase RNA: separate elements for Est1p and Est2p interactionApril J Livengood, Arthur J Zaug, Thomas R CechMolecular Biology of the Cell|September 19, 2003
Tetrahymena telomerase is active as a monomerTracy M Bryan, Karen J Goodrich, Thomas R CechPageof 19