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3.4.21.92: Endopeptidase Clp

This is an abbreviated version!
For detailed information about Endopeptidase Clp, go to the full flat file.

Word Map on EC 3.4.21.92

Reaction

Hydrolysis of proteins to small peptides in the presence of ATP and Mg2+. alpha-Casein is the usual test substrate. In the absence of ATP, only oligopeptides shorter than five residues are hydrolysed (such as succinyl-Leu-Tyr-/-NHMec, and Leu-Tyr-Leu-/-Tyr-Trp, in which cleavage of the -Tyr-/-Leu- and -Tyr-/-Trp bonds also occurs) =

Synonyms

ATP-dependent caseinolytic protease, ATP-dependent Clp protease, ATP-dependent Clp protease proteolytic subunit 1, ATP-dependent Clp protease proteolytic subunit 2, BsClpP, Caseinolytic protease, CLP, Clp protease, Clp proteolytic subunit, ClpA, ClpAP, ClpAP protease, ClpB, ClpC, ClpC ATPase, ClpC1, ClpCP protease, ClpCP3/R protease, ClpE, ClpP, ClpP Peptidase, ClpP Protease, ClpP protease complex, ClpP1, ClpP1 protease, ClpP1P2, ClpP2, ClpP2 protease, ClpP3, ClpP3/R complex, ClpQ, ClpR, ClpS1, ClpX, ClpX2, ClpXP, ClpXP protease, ClpY, CplC, endopeptidase Clp, endopeptidase Ti, Heat shock protein F21.5, heat-shock protease ClpP, nClpP7, nClpP8, PfClpP, Protease Ti, stress protein G7

ECTree

     3 Hydrolases
         3.4 Acting on peptide bonds (peptidases)
             3.4.21 Serine endopeptidases
                3.4.21.92 Endopeptidase Clp

Activating Compound

Activating Compound on EC 3.4.21.92 - Endopeptidase Clp

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ACTIVATING COMPOUND
ORGANISM
UNIPROT
COMMENTARY hide
LITERATURE
IMAGE
acyldepsipeptide
acyldepsipeptides
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ADEP series 2, 3, 4 as well as two other synthesized derivatives, IDR-10001 and IDR-10011, which incorporate N-methylalanine instead of the more rigid homoproline in the depsipeptide core structure. All five compound are active against Mycobacterium tuberculosis, ADEP2 is the most active
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ATP
stimulates proteolytic activity of ClpP in heart mitochondria of muscle creatine kinase mutants
ClpX
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ClpX binding stimulates ClpP cleavage of peptides larger than a few amino acids and enhances ClpP active-site modification. Stimulation requires ATP binding but not hydrolysis by ClpX
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additional information
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