Literature DB >> 2186030

The ATP-dependent Clp protease of Escherichia coli. Sequence of clpA and identification of a Clp-specific substrate.

S Gottesman1, W P Clark, M R Maurizi.   

Abstract

The clpA gene, which codes for the ATP-binding subunit of the ATP-dependent Clp protease of Escherichia coli, has been sequenced. The coding region contains a single open reading frame for a protein of 758 amino acids; within the amino acid sequence are two consensus sequences for ATP-binding sites. The sequence of ClpA does not resemble that of other previously described ATPases or Lon, the other sequenced ATP-dependent protease of E. coli, except in the ATP-binding site consensus region. The clpA gene is expressed as a monocistronic message. Primer extension experiments define a major start point of transcription at -183 relative to the start of translation. A rho-independent terminator is located 23 bases beyond the end of the coding region. The ClpA protein is degraded in vivo in a Clp-dependent fashion (t1/2 approximately 60 min). A fusion protein containing the first 40 amino acids of ClpA fused in frame to beta-galactosidase is degraded very rapidly in a clpA+ host (t1/2 approximately 3 min) but not in a clpA- host. This fusion protein is the first Clp-specific substrate described.

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Year:  1990        PMID: 2186030

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  49 in total

1.  Chloroplast-targeted ERD1 protein declines but its mRNA increases during senescence in Arabidopsis.

Authors:  L M Weaver; J E Froehlich; R M Amasino
Journal:  Plant Physiol       Date:  1999-04       Impact factor: 8.340

2.  ClpC ATPase is required for cell adhesion and invasion of Listeria monocytogenes.

Authors:  S Nair; E Milohanic; P Berche
Journal:  Infect Immun       Date:  2000-12       Impact factor: 3.441

Review 3.  ATP-dependent proteinases in bacteria.

Authors:  O Hlavácek; L Váchová
Journal:  Folia Microbiol (Praha)       Date:  2002       Impact factor: 2.099

Review 4.  Regulation by proteolysis: energy-dependent proteases and their targets.

Authors:  S Gottesman; M R Maurizi
Journal:  Microbiol Rev       Date:  1992-12

5.  Proteome-wide alterations in Escherichia coli translation rates upon anaerobiosis.

Authors:  Gertjan Kramer; Richard R Sprenger; Merel A Nessen; Winfried Roseboom; Dave Speijer; Luitzen de Jong; M Joost Teixeira de Mattos; JaapWillem Back; Chris G de Koster
Journal:  Mol Cell Proteomics       Date:  2010-08-16       Impact factor: 5.911

Review 6.  The Clp proteins: proteolysis regulators or molecular chaperones?

Authors:  C Squires; C L Squires
Journal:  J Bacteriol       Date:  1992-02       Impact factor: 3.490

7.  Role of a conserved pore residue in the formation of a prehydrolytic high substrate affinity state in the AAA+ chaperone ClpA.

Authors:  Mary E Farbman; Anne Gershenson; Stuart Licht
Journal:  Biochemistry       Date:  2008-12-23       Impact factor: 3.162

8.  Structure and function of a novel type of ATP-dependent Clp protease.

Authors:  Fredrik I Andersson; Anders Tryggvesson; Michal Sharon; Alexander V Diemand; Mirjam Classen; Christoph Best; Ronny Schmidt; Jenny Schelin; Tara M Stanne; Bernd Bukau; Carol V Robinson; Susanne Witt; Axel Mogk; Adrian K Clarke
Journal:  J Biol Chem       Date:  2009-02-23       Impact factor: 5.157

9.  Trapping and identification of cellular substrates of the Staphylococcus aureus ClpC chaperone.

Authors:  Justin W Graham; Mei G Lei; Chia Y Lee
Journal:  J Bacteriol       Date:  2013-08-02       Impact factor: 3.490

10.  Regulation of SOS mutagenesis by proteolysis.

Authors:  E G Frank; D G Ennis; M Gonzalez; A S Levine; R Woodgate
Journal:  Proc Natl Acad Sci U S A       Date:  1996-09-17       Impact factor: 11.205

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