Telomerase: Difference between revisions

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'''Overall Structure'''
'''Overall Structure'''


<scene name='60/602706/Telomerase/1'>Telomerase</scene> (protein in blue; RNA in green; DNA in red) acts as both a monomer and dimer. The monomer refers to the overall protein and its catalytic subunit TERT, made up of an amino acid polymer, containing approximately 5,000 atoms. This protein binds with the RNA template, <scene name='60/602706/Ter/1'>TER</scene>, that TERT uses to add DNA to form a dimer-like structure <ref name='TER'>doi:10.1038/nature07283</ref>. The RNA has a molecular size  between 200 and 500 kDA, depending on the organism <ref name='complex'/>. Both the protein and RNA components are highly conserved structures among phylogenetic groups. <scene name='60/602706/Tert/2'>TERT</scene> is organized into a ring-like structure that shares common features with other reverse transcriptases (in viruses for example) and DNA polymerases. The RNA-DNA heteroduplex lies in the interior of the ring and positions the 3' end of the DNA primer at the active site to the telomerse can be enlongated. The substrate binding within the ring can accomodate 7 to 8 bases of double-stranded nucleic acid <ref name='TER'/>.
<scene name='60/602706/Telomerase/1'>Telomerase</scene> (protein in grey; RNA in green; DNA in red) acts as both a monomer and dimer. The monomer refers to the overall protein and its catalytic subunit TERT, made up of an amino acid polymer, containing approximately 5,000 atoms. This protein binds with the RNA template, <scene name='60/602706/Ter/1'>TER</scene>, that TERT uses to add DNA to form a dimer-like structure <ref name='TER'>doi:10.1038/nature07283</ref>. The RNA has a molecular size  between 200 and 500 kDA, depending on the organism <ref name='complex'/>. Both the protein and RNA components are highly conserved structures among phylogenetic groups. <scene name='60/602706/Tert/2'>TERT</scene> is organized into a ring-like structure that shares common features with other reverse transcriptases (in viruses for example) and DNA polymerases. The RNA-DNA heteroduplex lies in the interior of the ring and positions the 3' end of the DNA primer at the active site to the telomerse can be enlongated. The substrate binding within the ring can accomodate 7 to 8 bases of double-stranded nucleic acid <ref name='TER'/>.


'''Architecture of TERT Structure'''
'''Architecture of TERT Structure'''

Revision as of 21:20, 24 September 2018

Telomerase: bound to telomeric DNA complex with Ca+2 ion (green) 3kyl

Drag the structure with the mouse to rotate

Telomerase 3D structures

Updated on 24-September-2018

    • Telomerase Reverse Transcriptase - TtTERT telomerase catalytic subunit (mutant) - Tetrahymena thermophila
    • 2r4g - TtTERT telomerase catalytic subunit
    • 6d6v – TtTERT + telomerase-associated protein + TEB2 + RNA + DNA – Cryo EM
    • 5c9h - TtTERT catalytic subunit + DNA
    • 3du6, 3du5 - TcTERT telomerase catalytic subunit - Tribolium castaneum
    • 3kyl - TcTERT telomerase catalytic subunit + DNA
    • 4o26 – TERT RNA-binding domain + RNA – rice fish
    • 4lmo - TERT telomerase RNA-binding domain – tiger puffer
    • 5lgf - TERT N-terminal - Ogataea polymorpha - NMR
    • 5ugw - hTERT thumb domain
    • 5cqg - TERT + inhibitor - red flour beetle
    • 5npt – TERT N-terminal – Ogataea polymorpha
  • Telomerase RNA
    • 2fey - TtTERC P2b hairpin – NMR
    • 5kmz - TtTERC pseudoknot – NMR
    • 2m21 - TtTERC stem loop IV – NMR
    • 2m22 - TtTERC helix II – NMR
    • 2mhi - TERC CR4/5 – medaka - NMR
    • 2m8k - TERC pseudoknot – Kluyveromyces lactis - NMR
    • 1q75, 2k96 – hTERC P2b hairpin (mutant) – human – NMR
    • 2k95, 1na2 - hTERC P2b hairpin – NMR
    • 2l3e - hTERC P2a P2b hairpin – NMR
    • 2qh2 - hTERC CR7– NMR
    • 1ymo - hTERC stem loop IV – NMR
    • 1z31 - hTERC Pj6 hairpin – NMR
    • 2kye - hTERC P6.1 hairpin – NMR
    • 2qh3, 2qh4 - hTERC terminal hairpin loop – NMR
    • 5kqe - TERC P2b hairpin – Oryzias latipes - NMR

References

Proteopedia Page Contributors and Editors (what is this?)

Wally Novak, Jackson Stevens, Michal Harel, Jaime Prilusky