Structural studies on Helicobacter pylori ATP-dependent protease, FtsH
- Abstract
- The ATP-dependent protease, FtsH, degrades misassembled membrane proteins for quality control like SecY, subunit a of FoF1-ATPase, and YccA, and digests short-lived soluble proteins in order to control their cellular regulation, including sigma 32, LpxC and lambda cII. The FtsH protein has an N-terminal transmembrane segment and a large cytosolic region that consists of two domains, an ATPase and a protease domain. To provide a structural basis for the nucleotide-dependent domain motions and a better understanding of substrate translocation, the crystal structures of the Helicobacter pylori (Hp) FtsH ATPase domain in the nucleotide-free state and complexed with ADP, were determined. Two different structures of HpFtsH ATPase were observed, with the nucleotide-free state in an asymmetric unit, and these structures reveal the new forms and show other conformational differences between the nucleotide-free and ADP-bound state compared with previous structures. In particular, one HpFtsH Apo structure has a considerable rotation difference compared with the HpFtsH ADP complex, and this large conformational change reveals that FtsH may have the mechanical force needed for substrate translocation.
- Author(s)
- Kim, Sung Hyun; Kang, Gil Bu; Song, Hye-Eun; Park, Sang Jin; Bea, Man-Ho; Eom, Soo Hyun
- Issued Date
- 2008-05
- Type
- Article
- DOI
- 10.1107/S090904950706846X
- URI
- https://scholar.gist.ac.kr/handle/local/17375
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