2DHR
Whole cytosolic region of ATP-dependent metalloprotease FtsH (G399L)
Summary for 2DHR
Entry DOI | 10.2210/pdb2dhr/pdb |
Related | 1IXZ 1IY0 1IY1 1IY2 |
Descriptor | FtsH, ADENOSINE-5'-DIPHOSPHATE (2 entities in total) |
Functional Keywords | aaa+ protein, hexameric zn metalloprotease, hydrolase |
Biological source | Thermus thermophilus |
Total number of polymer chains | 6 |
Total formula weight | 334778.89 |
Authors | Suno, R.,Niwa, H.,Tsuchiya, D.,Zhang, X.,Yoshida, M.,Morikawa, K. (deposition date: 2006-03-24, release date: 2006-06-27, Last modification date: 2024-05-29) |
Primary citation | Suno, R.,Niwa, H.,Tsuchiya, D.,Zhang, X.,Yoshida, M.,Morikawa, K. Structure of the Whole Cytosolic Region of ATP-Dependent Protease FtsH Mol.Cell, 22:575-585, 2006 Cited by PubMed Abstract: An ATP-dependent protease, FtsH, digests misassembled membrane proteins in order to maintain membrane integrity and digests short-lived soluble proteins in order to control their cellular regulation. This enzyme has an N-terminal transmembrane segment and a C-terminal cytosolic region consisting of an AAA+ ATPase domain and a protease domain. Here we present two crystal structures: the protease domain and the whole cytosolic region. The cytosolic region fully retains an ATP-dependent protease activity and adopts a three-fold-symmetric hexameric structure. The protease domains displayed a six-fold symmetry, while the AAA+ domains, each containing ADP, alternate two orientations relative to the protease domain, making "open" and "closed" interdomain contacts. Apparently, ATPase is active only in the closed form, and protease operates in the open form. The protease catalytic sites are accessible only through a tunnel following from the AAA+ domain of the adjacent subunit, raising a possibility of translocation of polypeptide substrate to the protease sites through this tunnel. PubMed: 16762831DOI: 10.1016/j.molcel.2006.04.020 PDB entries with the same primary citation |
Experimental method | X-RAY DIFFRACTION (3.9 Å) |
Structure validation
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