Elongation factor
From Proteopedia
Line 5: | Line 5: | ||
==3D structures of elongation factor== | ==3D structures of elongation factor== | ||
+ | |||
+ | Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}} | ||
===EF-Tu=== | ===EF-Tu=== |
Revision as of 12:04, 7 March 2013
Elongation factors (EF) facilitate translational elongation during the formation of peptide bonds in the ribosome. EF-selB is selenocysteine-specific EF. EF-Tu or EF 1-α (elongation factor thermo unstable) is a prokaryotic EF. EF-Tu contributes to translational accuracy. It catalyzes the addition of aminoacyl tRNA. EF-Ts or EF 1-β (elongation factor thermo stable) catalyzes the release of GDP from EF-Tu. EF-G translocates the peptidyl tRNA from the A site to the P site while moving the mRNA through the ribosome. EF-SII helps RNA polymerase II to bypass blocks to elongation. EF-ELL2 enhances polyadenylation and exon skipping with the gene encoding the immunoglobulin heavy-chain complex. EF-GreA or GreB are cleavage factors allowing the resumption of elongation. EF-NusA recruits translesion DNA polymerases to gaps encountered during translation. EF-P alters the ribosome affinity to aminoacyl-tRNA. EF-1 gamma acts during the delivery of aminoacyl tRNA to the ribosome. EF-2 promotes the translocation of the nascent protein chain from the A site to the P site on the ribosome. EF-3 is unique EF in fungi hence it provides an anti-fungal drug target. EF Spt4, Spt5, Spt6 are conserved among eukaryotes. They modulate the chromatin structure. EF-CA150 is believed to play a role in coupling transcription and splicing. The elongin B and C complex is involved in the proteasomal degredation of target proteins.
3D structures of elongation factorUpdated on 07-March-2013 EF-Tu1efm, 1efc, 1dg1, 2fx3 – EcEF – Escherichia coli EF-Tu complex with antibiotics 1ob2 - yEF + Phe-tRNA + antibiotic 4abr - TtEF + antibiotic in 30S ribosome EF-Tu complex with nucleotide 1efu – EcEF + GDP 1exm – TtEF + GTP analog EF-Tu with EF-Ts 1efu – EcEF + EcEF-Ts 1aip - TtEF + TtEF-Ts - Thermus thermophilus EF-Tu in the ribosome 3eq3, 3eq4 – EcEF in 80S ribosome – Cryo EM 3izv, 3izw - EcEF in 30S ribosome – Cryo EM EF-SII1tfi – hEF – human – NMR EF-ELL22e5n – hEF N2 domain - NMR EF-G1efg, 1elo, 1ktv, 1wdt, 2dy1 – TtEF EF-GreA/GreB2pn0 – EF – Nitrosomonas europaea EF-NusA1wcl, 1wcn – EcEF C terminal – NMR EF-P1ueb – TtEF EF-Ts1tfe – TtEF EF-1G1nhy – yEF N terminal
1pbu – hEF C terminal (mutant) - NMR EF-21n0v – yEF EF-32ix3 – yEF EF-SelB1lva – MtEF C terminal – Moorella thermoacetica EF-Spt52do3, 2e6z, 2e70 – hEF KOW motif – NMR EF-Spt63gxw, 3gxx, 3pjp – EF SH2 domain – Candida glabrata EF-CA1502dod, 2doe, 2dof, 2e71, 2kiq, 2kis – hEF FF domain – NMR Elongin BC complex1lqb – hEloBC + von-Hippel Lindau disease tumor suppressor + hypoxia inducible factor 1 α
|