Literature DB >> 11823179

FK506 binding protein from the hyperthermophilic archaeon Pyrococcus horikoshii suppresses the aggregation of proteins in Escherichia coli.

Akira Ideno1, Masahiro Furutani, Yoshitaka Iba, Yoshikazu Kurosawa, Tadashi Maruyama.   

Abstract

The 29-kDa FK506 binding protein (FKBP) gene is the only peptidyl-prolyl cis-trans isomerase (PPIase) gene in the genome of Pyrococcus horikoshii. We characterized the function of this FKBP (PhFKBP29) and used it to increase the production yield of soluble recombinant protein in Escherichia coli. The PPIase activity (k(cat)/K(m)) of PhFKBP29 was found to be much lower than that of other archaeal 16- to 18-kDa FKBPs by a chymotrypsin-coupled assay of the oligo-peptidyl substrate at 15 degrees C. Besides this low PPIase activity, PhFKBP29 showed chaperone-like protein folding activity which enhanced the refolding yield of chemically unfolded rhodanese in vitro. In addition, it suppressed thermal protein aggregation in a temperature range of 45 to 100 degrees C. When the PhFKBP29 gene was coexpressed with the recombinant Fab fragment gene of the anti-hen egg lysozyme antibody in the cytoplasm of E. coli, whose expressed product tended to form an inactive aggregate in E. coli, it improved the yield of the soluble Fab fragments with antibody specificity. PhFKBP29 exerted protein folding and aggregation suppression in E. coli cells.

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Year:  2002        PMID: 11823179      PMCID: PMC126703          DOI: 10.1128/AEM.68.2.464-469.2002

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  23 in total

1.  FK506 binding protein from a thermophilic archaeon, Methanococcus thermolithotrophicus, has chaperone-like activity in vitro.

Authors:  M Furutani; A Ideno; T Iida; T Maruyama
Journal:  Biochemistry       Date:  2000-01-18       Impact factor: 3.162

2.  FK506-binding protein of the hyperthermophilic archaeum, Thermococcus sp. KS-1, a cold-shock-inducible peptidyl-prolyl cis-trans isomerase with activities to trap and refold denatured proteins.

Authors:  A Ideno; T Yoshida; T Iida; M Furutani; T Maruyama
Journal:  Biochem J       Date:  2001-07-15       Impact factor: 3.857

3.  A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding.

Authors:  M M Bradford
Journal:  Anal Biochem       Date:  1976-05-07       Impact factor: 3.365

4.  FK506-binding protein-type peptidyl-prolyl cis-trans isomerase from a halophilic archaeum, Halobacterium cutirubrum.

Authors:  T Iida; T Iwabuchi; A Ideno; S Suzuki; T Maruyama
Journal:  Gene       Date:  2000-10-03       Impact factor: 3.688

5.  Substrate specificities of the peptidyl prolyl cis-trans isomerase activities of cyclophilin and FK-506 binding protein: evidence for the existence of a family of distinct enzymes.

Authors:  R K Harrison; R L Stein
Journal:  Biochemistry       Date:  1990-04-24       Impact factor: 3.162

Review 6.  Archaeal peptidyl prolyl cis-trans isomerases (PPIases).

Authors:  T Maruyama; M Furutani
Journal:  Front Biosci       Date:  2000-09-01

7.  Mechanistic studies of peptidyl prolyl cis-trans isomerase: evidence for catalysis by distortion.

Authors:  R K Harrison; R L Stein
Journal:  Biochemistry       Date:  1990-02-20       Impact factor: 3.162

8.  FKBP-type peptidyl-prolyl cis-trans isomerase from a sulfur-dependent hyperthermophilic archaeon, Thermococcus sp. KS-1.

Authors:  T Iida; M Furutani; F Nishida; T Maruyama
Journal:  Gene       Date:  1998-11-19       Impact factor: 3.688

9.  Cyclophilin and peptidyl-prolyl cis-trans isomerase are probably identical proteins.

Authors:  G Fischer; B Wittmann-Liebold; K Lang; T Kiefhaber; F X Schmid
Journal:  Nature       Date:  1989-02-02       Impact factor: 49.962

10.  Peptidyl-prolyl cis-trans isomerase is the cyclosporin A-binding protein cyclophilin.

Authors:  N Takahashi; T Hayano; M Suzuki
Journal:  Nature       Date:  1989-02-02       Impact factor: 49.962

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  7 in total

1.  Effect of biofilm growth on expression of surface proteins of Actinomyces naeslundii genospecies 2.

Authors:  James S Paddick; Susan R Brailsford; Susmitha Rao; Renata F Soares; Edwina A M Kidd; David Beighton; Karen A Homer
Journal:  Appl Environ Microbiol       Date:  2006-05       Impact factor: 4.792

2.  Structural analysis of protein folding by the long-chain archaeal chaperone FKBP26.

Authors:  Erik Martinez-Hackert; Wayne A Hendrickson
Journal:  J Mol Biol       Date:  2011-01-22       Impact factor: 5.469

3.  Periplasmic expression of soluble single chain T cell receptors is rescued by the chaperone FkpA.

Authors:  Kristin S Gunnarsen; Elin Lunde; Per E Kristiansen; Bjarne Bogen; Inger Sandlie; Geir Å Løset
Journal:  BMC Biotechnol       Date:  2010-02-03       Impact factor: 2.563

Review 4.  Catalytic Antibodies: Design, Expression, and Their Applications in Medicine.

Authors:  Daqun Zhao; Jie Chen; Xiaoyue Hu; Shujun Zhang
Journal:  Appl Biochem Biotechnol       Date:  2022-10-12       Impact factor: 3.094

5.  Strategies for successful recombinant expression of disulfide bond-dependent proteins in Escherichia coli.

Authors:  Ario de Marco
Journal:  Microb Cell Fact       Date:  2009-05-14       Impact factor: 5.328

6.  Folding machineries displayed on a cation-exchanger for the concerted refolding of cysteine- or proline-rich proteins.

Authors:  Dae-Hee Lee; Sung-Gun Kim; Dae-Hyuk Kweon; Jin-Ho Seo
Journal:  BMC Biotechnol       Date:  2009-03-26       Impact factor: 2.563

7.  Thermococcus sp. KS-1 PPIase as a fusion partner improving soluble production of aromatic amino acid decarboxylase.

Authors:  Takashi Koyanagi; Ayumi Hara; Kanako Kobayashi; Yuji Habara; Akira Nakagawa; Hiromichi Minami; Takane Katayama; Norihiko Misawa
Journal:  AMB Express       Date:  2021-12-27       Impact factor: 3.298

  7 in total

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