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EC Number
Natural Substrates
Commentary (Nat. Sub.)
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central competence regulator sigmax + H2O
adaptor protein MecA ultimately targets sigmaX for its degradation by the ClpCP protease in an ATP-dependent manner
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ClpP associates with ClpX or ClpA to form the AAA+ ClpXP or ClpAP proteases
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ClpP binds to AAA+ ATPase/unfoldase, ClpA or ClpX
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ClpP is present in a wide range of prokaryotic and eukaryotic cells and is highly conserved in plant chloroplasts
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ClpP linked to many activities, including sporulation, cell competence, stress tolerance and regulation of gene expression
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ClpP requires association with ClpA or ClpX to unfold and thread protein substrates through the axial pore into the inner chamber where degradation occurs
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ClpXP appears to be involved in plasmid maintenance and in phage Mu virulence
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enzyme complex ClpPRS consisting of five ClpP protease molecules, four nonproteolytic ClpR molecules, and two associated ClpS molecules, is central to chloroplast biogenesis, thylakoid protein homeostasis, and plant development
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enzyme is required for release of autolysin A and pneumolysin. In vivo, it is required for growth of pneumococcus in the lungs and blood in a murine model of disease
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