AbstractA short form of Escherichia coli translational initiation factor IF3, repeatedly found both in vivo and in vitro, lacking the positively charged N-terminal hexapeptide has been produced by mild trypsinization. The properties of this short form of IF3 have been studied. Compared to the long native form of the factor, the shortened IF3 displays a markedly decreased thermal stability and affinity for the 30 S ribosomal sub-unit, as well as a reduced biological activity in protein synthesis. Following the loss of the N-terminal hexapeptide, a second peptide bond (Lys-90Val-91) becomes easily accessible to proteolytic attack suggesting that formation of the short IF3 may be the first step in the physiological degradation of the factor
AbstractWe have studied the interactions between the ribosome and the domains of Escherichia coli tr...
Translation initiation factor IF3 is an essential bacterial protein, consisting of two domains (IF3C...
AbstractThe complete amino acid sequence of the initiation factor IF3 from Bacillus stearothermophil...
AbstractA short form of Escherichia coli translational initiation factor IF3, repeatedly found both ...
IF3C is the C-terminal domain of Escherichia coli translation initiation factor 3 (IF3) and is respo...
Initiation factor 3 (IF3) is one of the three conserved prokaryotic translation initiation factors e...
Initiation factor IF3 is an essential protein that enhances the fidelity and speed of bacterial mRNA...
The location of translational initiation factor IF3 bound to the 30S subunit of the Thermus thermoph...
By means of limited proteolysis of Bacillus stearothermophilus initiation factor IF2 and genetic man...
Initiation factor IF3 contains two domains separated by a flexible linker. While the isolated N-doma...
AbstractProtein synthesisInitiation factorInitiation factor 3 recyclingRibosome N-Ethylmaleimid
Like most biological polymerization reactions, ribosome-catalyzed protein synthesis, or translation,...
AbstractBackground: Translation initiation factor 5A (IF-5A) is reported to be involved in the first...
Titrations of Escherichia coli translation initiation factor IF3, isotopically labeled with N-15, wi...
AbstractInitiation factor IF2 from either Escherichia coli or Bacillus stearothermophilus was found ...
AbstractWe have studied the interactions between the ribosome and the domains of Escherichia coli tr...
Translation initiation factor IF3 is an essential bacterial protein, consisting of two domains (IF3C...
AbstractThe complete amino acid sequence of the initiation factor IF3 from Bacillus stearothermophil...
AbstractA short form of Escherichia coli translational initiation factor IF3, repeatedly found both ...
IF3C is the C-terminal domain of Escherichia coli translation initiation factor 3 (IF3) and is respo...
Initiation factor 3 (IF3) is one of the three conserved prokaryotic translation initiation factors e...
Initiation factor IF3 is an essential protein that enhances the fidelity and speed of bacterial mRNA...
The location of translational initiation factor IF3 bound to the 30S subunit of the Thermus thermoph...
By means of limited proteolysis of Bacillus stearothermophilus initiation factor IF2 and genetic man...
Initiation factor IF3 contains two domains separated by a flexible linker. While the isolated N-doma...
AbstractProtein synthesisInitiation factorInitiation factor 3 recyclingRibosome N-Ethylmaleimid
Like most biological polymerization reactions, ribosome-catalyzed protein synthesis, or translation,...
AbstractBackground: Translation initiation factor 5A (IF-5A) is reported to be involved in the first...
Titrations of Escherichia coli translation initiation factor IF3, isotopically labeled with N-15, wi...
AbstractInitiation factor IF2 from either Escherichia coli or Bacillus stearothermophilus was found ...
AbstractWe have studied the interactions between the ribosome and the domains of Escherichia coli tr...
Translation initiation factor IF3 is an essential bacterial protein, consisting of two domains (IF3C...
AbstractThe complete amino acid sequence of the initiation factor IF3 from Bacillus stearothermophil...