Reverse transcriptase: Difference between revisions
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This ''hand-like'' <scene name='Reverse_transcriptase/Chains/2'>heterodimer</scene> protein has an usual length of 1000 residues (560 in Chain A and 440 for B), a third of them involved in alpha helices and almost a quarter involved in beta sheets, showing α+β <scene name='Reverse_transcriptase/Secondary/2'>secondary structure</scene> domains. <scene name='Reverse_transcriptase/Chaina/2'>Chain A</scene> has an usual weight of 66KDa whereas <scene name='Reverse_transcriptase/Chainb/2'>Chain B</scene> is around 51KDa. These monomers are derived from the same gene, but p51 lacks the amino acids of one active site and has a different tertiary structure conformation compared to p66. Because of this, p51 is enzymatically inactive<ref>PMID: 1377403</ref> | This ''hand-like'' <scene name='Reverse_transcriptase/Chains/2'>heterodimer</scene> protein has an usual length of 1000 residues (560 in Chain A and 440 for B), a third of them involved in alpha helices and almost a quarter involved in beta sheets, showing α+β <scene name='Reverse_transcriptase/Secondary/2'>secondary structure</scene> domains. <scene name='Reverse_transcriptase/Chaina/2'>Chain A</scene> has an usual weight of 66KDa whereas <scene name='Reverse_transcriptase/Chainb/2'>Chain B</scene> is around 51KDa. These monomers are derived from the same gene, but p51 lacks the amino acids of one active site and has a different tertiary structure conformation compared to p66. Because of this, p51 is enzymatically inactive<ref>PMID: 1377403</ref> | ||
There are five distinct structures within the p66 subchain that are used to describe the functions of RT: the fingers (residues 1–85 and 118–155), the palm (residues 86–117 and 156–236), the thumb (residues 237–318), the connection (319–426), and the RNase H (residues 427-end). The palm contains the main active site (residues 110, 185-186)<ref> PMID: | There are five distinct structures within the p66 subchain that are used to describe the functions of RT: the fingers (residues 1–85 and 118–155), the palm (residues 86–117 and 156–236), the thumb (residues 237–318), the connection (319–426), and the RNase H (residues 427-end). The palm contains the main active site (residues 110, 185-186)<ref> PMID: 19022262 </ref> | ||
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Revision as of 13:57, 27 September 2017
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3D Structures of Reverse transcriptase
Updated on 27-September-2017
- 2b2a - TtRT telomerase catalytic subunit (mutant) - Tetrahymena thermophila
- 2r4g - TtRT telomerase RNA-binding domain
- 3du6, 3du5 - TcRT telomerase catalytic subunit - Tribolium castaneum
- 3kyl - TcRT telomerase catalytic subunit + DNA
- 4o26 – RT RNA-binding domain + RNA – rice fish
- 4lmo - RT telomerase RNA-binding domain – tiger puffer
- 5lgf - RT N-terminal - Ogataea polymorpha - NMR
- 2b2a - TtRT telomerase catalytic subunit (mutant) - Tetrahymena thermophila
See Also
- Reverse Transcriptase at Wikipedia
- Molecule of the Month (09/2002) at RCSB Protein Data Bank
- List of Reverse Transcriptase articles at Proteopedia and at RCSB Protein Data Bank
- Model of Reverse Transcriptase as one of the CBI Molecules on the Molecular Playground
- See Transcription for additional Proteopedia articles on the subject.
- For additional information, see: Human Immunodeficiency Virus
- For additional information, see: Transcription and RNA Processing
References
Proteopedia Page Contributors and Editors (what is this?)
Daniel Moyano-Marino, Alexander Berchansky, Eric Martz, Amol Kapoor, Lynmarie K Thompson, David Canner, Brian Foley, Jaime Prilusky, Joel L. Sussman, Michal Harel
