Authors
Sandra Saschenbrecker, Andreas Bracher, Karnam Vasudeva Rao, Bharathi Vasudeva Rao, F Ulrich Hartl, Manajit Hayer-Hartl
Publication date
2007/6/15
Journal
Cell
Volume
129
Issue
6
Pages
1189-1200
Publisher
Elsevier
Description
After folding, many proteins must assemble into oligomeric complexes to become biologically active. Here we describe the role of RbcX as an assembly chaperone of ribulose-bisphosphate carboxylase/oxygenase (Rubisco), the enzyme responsible for the fixation of atmospheric carbon dioxide. In cyanobacteria and plants, Rubisco is an ∼520 kDa complex composed of eight large subunits (RbcL) and eight small subunits (RbcS). We found that cyanobacterial RbcX functions downstream of chaperonin-mediated RbcL folding in promoting the formation of RbcL8 core complexes. Structural analysis revealed that the 15 kDa RbcX forms a homodimer with two cooperating RbcL-binding regions. A central cleft specifically binds the exposed C-terminal peptide of RbcL subunits, enabling a peripheral surface of RbcX to mediate RbcL8 assembly. Due to the dynamic nature of these interactions, RbcX is readily displaced …
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