The transition of the 30S initiation complex (IC) to the translating 70S ribosome after 50S subunit joining provides an important checkpoint for mRNA selection during translation in bacteria. Here, we study the timing and control of reactions that occur during 70S IC formation by rapid kinetic techniques, using a toolbox of fluorescence-labeled translation components. We present a kinetic model based on global fitting of time courses obtained with eight different reporters at increasing concentrations of 50S subunits. IF1 and IF3 together affect the kinetics of subunit joining, but do not alter the elemental rates of subsequent steps of 70S IC maturation. After 50S subunit joining, IF2-dependent reactions take place independent of the prese...
Bacterial translation initiation pathway entails several steps kinetically controlled by initiation ...
Like most biological polymerization reactions, ribosome-catalyzed protein synthesis, or translation,...
Initiation of mRNA translation in bacteria proceeds through several steps. The early events entail t...
The transition of the 30S initiation complex (IC) to the translating 70S ribosome after 50S subunit ...
The transition of the 30S initiation complex (IC) to the translating 70S ribosome after 50S subunit ...
Binding of the 50S ribosomal subunit to the 30S initiation complex and the subsequent transition fro...
The translation initiation efficiency of a given mRNA is determined by its translation initiation re...
Initiation is the most regulated and rate limiting step of mRNA translation. In prokaryotes translat...
Initiation factors guide the ribosome in the selection of mRNA and translational reading frame. We d...
Translation initiation, the rate-limiting step of the universal process of protein synthesis, procee...
Protein biosynthesis occurs on large macromolecular ribo-nucleoprotein complexes, the ribosomes, in ...
Initiation of mRNA translation in prokaryotes requires the small ribosomal subunit (30S), three init...
Initiation of mRNA translation in prokaryotes requires the small ribosomal subunit (30S), three init...
Initiation factor IF3 is an essential protein that enhances the fidelity and speed of bacterial mRNA...
Bacterial translation initiation pathway entails several steps kinetically controlled by initiation ...
Like most biological polymerization reactions, ribosome-catalyzed protein synthesis, or translation,...
Initiation of mRNA translation in bacteria proceeds through several steps. The early events entail t...
The transition of the 30S initiation complex (IC) to the translating 70S ribosome after 50S subunit ...
The transition of the 30S initiation complex (IC) to the translating 70S ribosome after 50S subunit ...
Binding of the 50S ribosomal subunit to the 30S initiation complex and the subsequent transition fro...
The translation initiation efficiency of a given mRNA is determined by its translation initiation re...
Initiation is the most regulated and rate limiting step of mRNA translation. In prokaryotes translat...
Initiation factors guide the ribosome in the selection of mRNA and translational reading frame. We d...
Translation initiation, the rate-limiting step of the universal process of protein synthesis, procee...
Protein biosynthesis occurs on large macromolecular ribo-nucleoprotein complexes, the ribosomes, in ...
Initiation of mRNA translation in prokaryotes requires the small ribosomal subunit (30S), three init...
Initiation of mRNA translation in prokaryotes requires the small ribosomal subunit (30S), three init...
Initiation factor IF3 is an essential protein that enhances the fidelity and speed of bacterial mRNA...
Bacterial translation initiation pathway entails several steps kinetically controlled by initiation ...
Like most biological polymerization reactions, ribosome-catalyzed protein synthesis, or translation,...
Initiation of mRNA translation in bacteria proceeds through several steps. The early events entail t...