- Translation Initiation in eukaryoteseIF1A blocks ____ site
- Translation Initiation in eukaryotes____ eIF instead of ____ IF
- Translation Initiation in eukaryoteseIF4F loads __________ into ribosome (binds ________)
- Translation Initiation in eukaryotes__________ complex bridges 5' cap and poly(A) tail to ___________ mRNA during translation- this enhances translation ________________-promotes re-initiation of translation after _______________.
- Translation Initiation in bacteriaIF2 will only bind to fMet is it is bound to _________ which then binds _______
- Translation Initiation in eukaryotesKozak sequence does not use _______ pairing
- Translation Initiation in bacteriaIF1 and IF3 bind then ________ loaded in
- Translation Initiation in eukaryotesIRES = Internal Ribosomal Entry SitesRNA that does not have ______________
- Kozak sequence has a purine ____ nt's upstream of start codon + G immediately after __________ codon (vertebrates)
- Translation Initiation in bacteriaIF2 ____________ bound GTP and releases (as GDP-bound IF2), taking _______ with it
- Translation Initiation in bacteriaWithout IF1, tRNAs can enter ____-site
- Translation Initiation in eukaryotesBring in _____________ tRNA before mRNA gets loaded (reverse of bacterial)
- Translation Initiation in bacteriaconformation change in small ribosomal subunit triggers release of _______ so large subunit can bind
- Translation Initiation in bacteriaMet-tRNA^fMet is the only aminoacyl-tRNA that can bind first to ______ site
- Translation Initiation in bacteriaShine-dalgarno positions 5'-AUG in _______________
- Translation Initiation in eukaryotesmRNA binds to small subunit of ribosome after all _______ are bound
- Translation Initiation in bacteriaGTP stays as a tri-phosphate during binding to the ________
- In both bacteria and eukaryotes, __________________ remove N-terminal Met from some proteins
- initiator-aminoacyl tRNA different from ________-tRNA
- In bacteria, the structure of the _________ separates the initiator from other mets