Title of article :
Function of Trigger Factor and DnaK in Multidomain Protein Folding: Increase in Yield at the Expense of Folding Speed
Author/Authors :
Chang، Hung-Chun نويسنده , , Georgopoulos، Costa نويسنده , , Hayer-Hartl، Manajit نويسنده , , Hartl، F. Ulrich نويسنده , , Agashe، Vishwas R. نويسنده , , Guha، Suranjana نويسنده , , Genevaux، Pierre نويسنده , , Stemp، Markus نويسنده , , Barral، Jose M. نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2004
Pages :
-198
From page :
199
To page :
0
Abstract :
Trigger factor and DnaK protect nascent protein chains from misfolding and aggregation in the E. coli cytosol, but how these chaperones affect the mechanism of de novo protein folding is not yet understood. Upon expression under chaperonedepleted conditions, multidomain proteins such as bacterial (beta)-galactosidase ((beta)-gal) and eukaryotic luciferase fold by a rapid but inefficient default pathway, tightly coupled to translation. Trigger factor and DnaK improve the folding yield of these proteins but markedly delay the folding process both in vivo and in vitro. This effect requires the dynamic recruitment of additional trigger factor molecules to translating ribosomes. While (beta)-galactosidase uses this chaperone mechanism effectively, luciferase folding in E. coli remains inefficient. The efficient cotranslational domain folding of luciferase observed in the eukaryotic system is not compatible with the bacterial chaperone system. These findings suggest important differences in the coupling of translation and folding between bacterial and eukaryotic cells.
Keywords :
Emissions , NO oxidation , NOx storage/reduction catalysts , NOx storage , Catalyst , NOx release
Journal title :
CELL
Serial Year :
2004
Journal title :
CELL
Record number :
102565
Link To Document :
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