Structural and theoretical studies indicate that the cylindrical protease ClpP samples extended and compact conformations.

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Citation

Kimber MS, Yu AY, Borg M, Leung E, Chan HS, Houry WA

Structural and theoretical studies indicate that the cylindrical protease ClpP samples extended and compact conformations.

Structure. 2010 Jul 14;18(7):798-808. doi: 10.1016/j.str.2010.04.008.

PubMed ID
20637416 [ View in PubMed
]
Abstract

The highly conserved ClpP protease consists of two heptameric rings that interact by the interdigitation of an alpha-helix beta strand handle domain motif to form a tetradecameric cylinder. We previously proposed that protease dynamics results in the temporary unstructuring of interacting pairs of handle domains, opening transient equatorial side pores that allow for peptide egress. Here, we report the structure of an Escherichia coli ClpP mutant in which each opposing pair of protomers is linked by a disulfide bond. This structure resembles the compact structures of Streptococcus pneumoniae, Mycobacterium tuberculosis, and Plasmodium falciparum ClpPs, rather than the active, extended structures that have previously been determined for E. coli ClpPs. The structural data, along with normal mode analysis, support a model whereby the ClpP cylinder switches dynamically between an active extended state required for substrate degradation and an inactive compact state allowing peptide product release.

DrugBank Data that Cites this Article

Polypeptides
NameUniProt ID
ATP-dependent Clp protease proteolytic subunitP0A6G7Details