Literature DB >> 29440226

A single nucleotide incorporation step limits human telomerase repeat addition activity.

Yinnan Chen1, Joshua D Podlevsky1, Dhenugen Logeswaran1, Julian J-L Chen2.   

Abstract

Human telomerase synthesizes telomeric DNA repeats (GGTTAG)n onto chromosome ends using a short template from its integral telomerase RNA (hTR). However, telomerase is markedly slow for processive DNA synthesis among DNA polymerases. We report here that the unique template-embedded pause signal restricts the first nucleotide incorporation for each repeat synthesized, imparting a significantly greater KM This slow nucleotide incorporation step drastically limits repeat addition processivity and rate under physiological conditions, which is alleviated with augmented concentrations of dGTP or dGDP, and not with dGMP nor other nucleotides. The activity stimulation by dGDP is due to nucleoside diphosphates functioning as substrates for telomerase. Converting the first nucleotide of the repeat synthesized from dG to dA through the telomerase template mutation, hTR-51U, correspondingly shifts telomerase repeat addition activity stimulation to dATP-dependent. In accordance, telomerase without the pause signal synthesizes DNA repeats with extremely high efficiency under low dGTP concentrations and lacks dGTP stimulation. Thus, the first nucleotide incorporation step of the telomerase catalytic cycle is a potential target for therapeutic enhancement of telomerase activity.
© 2018 The Authors.

Entities:  

Keywords:  DNA polymerase; deoxynucleoside diphosphate; processivity; reverse transcriptase; ribonucleoprotein

Mesh:

Substances:

Year:  2018        PMID: 29440226      PMCID: PMC5852417          DOI: 10.15252/embj.201797953

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


  53 in total

1.  Regulation of catalytic activity and processivity of human telomerase.

Authors:  D Sun; C C Lopez-Guajardo; J Quada; L H Hurley; D D Von Hoff
Journal:  Biochemistry       Date:  1999-03-30       Impact factor: 3.162

2.  dGTP-dependent processivity and possible template switching of euplotes telomerase.

Authors:  P W Hammond; T R Cech
Journal:  Nucleic Acids Res       Date:  1997-09-15       Impact factor: 16.971

Review 3.  The structure and function of telomerase reverse transcriptase.

Authors:  Chantal Autexier; Neal F Lue
Journal:  Annu Rev Biochem       Date:  2006       Impact factor: 23.643

4.  Crystal structure of the essential N-terminal domain of telomerase reverse transcriptase.

Authors:  Steven A Jacobs; Elaine R Podell; Thomas R Cech
Journal:  Nat Struct Mol Biol       Date:  2006-02-05       Impact factor: 15.369

5.  Telomere-end processing the terminal nucleotides of human chromosomes.

Authors:  Agnel J Sfeir; Weihang Chai; Jerry W Shay; Woodring E Wright
Journal:  Mol Cell       Date:  2005-04-01       Impact factor: 17.970

6.  Reverse transcriptase motifs in the catalytic subunit of telomerase.

Authors:  J Lingner; T R Hughes; A Shevchenko; M Mann; V Lundblad; T R Cech
Journal:  Science       Date:  1997-04-25       Impact factor: 47.728

7.  A homozygous telomerase T-motif variant resulting in markedly reduced repeat addition processivity in siblings with Hoyeraal Hreidarsson syndrome.

Authors:  Maria M Gramatges; Xiaodong Qi; Ghadir S Sasa; Julian J-L Chen; Alison A Bertuch
Journal:  Blood       Date:  2013-03-28       Impact factor: 22.113

8.  Ancestral mutation in telomerase causes defects in repeat addition processivity and manifests as familial pulmonary fibrosis.

Authors:  Jonathan K Alder; Joy D Cogan; Andrew F Brown; Collin J Anderson; William E Lawson; Peter M Lansdorp; John A Phillips; James E Loyd; Julian J-L Chen; Mary Armanios
Journal:  PLoS Genet       Date:  2011-03-31       Impact factor: 5.917

9.  The telomerase essential N-terminal domain promotes DNA synthesis by stabilizing short RNA-DNA hybrids.

Authors:  Benjamin M Akiyama; Joseph W Parks; Michael D Stone
Journal:  Nucleic Acids Res       Date:  2015-05-04       Impact factor: 16.971

10.  Coordinated DNA dynamics during the human telomerase catalytic cycle.

Authors:  Joseph W Parks; Michael D Stone
Journal:  Nat Commun       Date:  2014-06-13       Impact factor: 14.919

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  11 in total

1.  The conserved structure of plant telomerase RNA provides the missing link for an evolutionary pathway from ciliates to humans.

Authors:  Jiarui Song; Dhenugen Logeswaran; Claudia Castillo-González; Yang Li; Sreyashree Bose; Behailu Birhanu Aklilu; Zeyang Ma; Alexander Polkhovskiy; Julian J-L Chen; Dorothy E Shippen
Journal:  Proc Natl Acad Sci U S A       Date:  2019-11-21       Impact factor: 11.205

2.  An Activity Switch in Human Telomerase Based on RNA Conformation and Shaped by TCAB1.

Authors:  Lu Chen; Caitlin M Roake; Adam Freund; Pedro J Batista; Siqi Tian; Yi A Yin; Chandresh R Gajera; Shengda Lin; Byron Lee; Matthew F Pech; Andrew S Venteicher; Rhiju Das; Howard Y Chang; Steven E Artandi
Journal:  Cell       Date:  2018-05-24       Impact factor: 41.582

3.  Telomere DNA G-quadruplex folding within actively extending human telomerase.

Authors:  Linnea I Jansson; Jendrik Hentschel; Joseph W Parks; Terren R Chang; Cheng Lu; Rishika Baral; Clive R Bagshaw; Michael D Stone
Journal:  Proc Natl Acad Sci U S A       Date:  2019-04-24       Impact factor: 12.779

4.  Mechanisms of template handling and pseudoknot folding in human telomerase and their manipulation to expand the sequence repertoire of processive repeat synthesis.

Authors:  Aishwarya P Deshpande; Kathleen Collins
Journal:  Nucleic Acids Res       Date:  2018-09-06       Impact factor: 16.971

5.  Transcriptional regulation of metabolism in disease: From transcription factors to epigenetics.

Authors:  Liam J Hawkins; Rasha Al-Attar; Kenneth B Storey
Journal:  PeerJ       Date:  2018-06-15       Impact factor: 2.984

6.  Mechanisms of nucleotide selection by telomerase.

Authors:  Matthew A Schaich; Samantha L Sanford; Griffin A Welfer; Samuel A Johnson; Thu H Khoang; Patricia L Opresko; Bret D Freudenthal
Journal:  Elife       Date:  2020-06-05       Impact factor: 8.140

7.  Observation of processive telomerase catalysis using high-resolution optical tweezers.

Authors:  Eric M Patrick; Joseph D Slivka; Bramyn Payne; Matthew J Comstock; Jens C Schmidt
Journal:  Nat Chem Biol       Date:  2020-02-17       Impact factor: 15.040

Review 8.  Composition and Function of Telomerase-A Polymerase Associated with the Origin of Eukaryotes.

Authors:  Petra Procházková Schrumpfová; Jiří Fajkus
Journal:  Biomolecules       Date:  2020-10-08

9.  The Processivity of Telomerase: Insights from Kinetic Simulations and Analyses.

Authors:  Clive R Bagshaw; Jendrik Hentschel; Michael D Stone
Journal:  Molecules       Date:  2021-12-13       Impact factor: 4.927

10.  Mechanisms of telomerase inhibition by oxidized and therapeutic dNTPs.

Authors:  Samantha L Sanford; Griffin A Welfer; Bret D Freudenthal; Patricia L Opresko
Journal:  Nat Commun       Date:  2020-10-20       Impact factor: 17.694

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