» Articles » PMID: 9440528

Biochemical and Genetic Characterization of an FK506-sensitive Peptidyl Prolyl Cis-trans Isomerase from a Thermophilic Archaeon, Methanococcus Thermolithotrophicus

Overview
Journal J Bacteriol
Specialty Microbiology
Date 1998 Jan 24
PMID 9440528
Citations 9
Authors
Affiliations
Soon will be listed here.
Abstract

A peptidyl prolyl cis-trans isomerase (PPIase) was purified from a thermophilic methanogen, Methanococcus thermolithotrophicus. The PPIase activity was inhibited by FK506 but not by cyclosporine. The molecular mass of the purified enzyme was estimated to be 16 kDa by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and 42 kDa by gel filtration. The enzyme was thermostable, with the half-lives of its activity at 90 and 100 degrees C being 90 and 30 min, respectively. The catalytic efficiencies (k(cat)/Km) measured at 15 degrees C for the peptidyl substrates, N-succinyl-Ala-Leu-Pro-Phe-p-nitroanilide and N-succinyl-Ala-Ala-Pro-Phe-p-nitroanilide, were 0.35 and 0.20 microM(-1) s(-1), respectively, in chymotrypsin-coupled assays. The purified enzyme was sensitive to FK506 and therefore was called MTFK (M. thermolithotrophicus FK506-binding protein). The MTFK gene (462 bp) was cloned from an M. thermolithotrophicus genomic library. The comparison of the amino acid sequence of MTFK with those of other FK506-binding PPIases revealed that MTFK has a 13-amino-acid insertion in the N-terminal region that is unique to thermophilic archaea. The relationship between the thermostable nature of MTFK and its structure is discussed.

Citing Articles

Distribution of Peptidyl-Prolyl Isomerase (PPIase) in the Archaea.

Anchal , Kaushik V, Goel M Front Microbiol. 2021; 12:751049.

PMID: 34691003 PMC: 8530231. DOI: 10.3389/fmicb.2021.751049.


AtFKBP53: a chimeric histone chaperone with functional nucleoplasmin and PPIase domains.

Singh A, Datta A, Jobichen C, Luan S, Vasudevan D Nucleic Acids Res. 2019; 48(3):1531-1550.

PMID: 31807785 PMC: 7026663. DOI: 10.1093/nar/gkz1153.


Electrostatic effects on the folding stability of FKBP12.

Batra J, Tjong H, Zhou H Protein Eng Des Sel. 2016; 29(8):301-308.

PMID: 27381026 PMC: 4955870. DOI: 10.1093/protein/gzw014.


Specific metal recognition in nickel trafficking.

Higgins K, Carr C, Maroney M Biochemistry. 2012; 51(40):7816-32.

PMID: 22970729 PMC: 3502001. DOI: 10.1021/bi300981m.


Mode of action of microbial bioactive metabolites.

Bethal V Folia Microbiol (Praha). 2006; 51(5):359-69.

PMID: 17176753 DOI: 10.1007/BF02931577.


References
1.
Siekierka J, Staruch M, Hung S, Sigal N . FK-506, a potent novel immunosuppressive agent, binds to a cytosolic protein which is distinct from the cyclosporin A-binding protein, cyclophilin. J Immunol. 1989; 143(5):1580-3. View

2.
Hoaki T, Nishijima M, Kato M, Adachi K, Mizobuchi S, Hanzawa N . Growth requirements of hyperthermophilic sulfur-dependent heterotrophic archaea isolated from a shallow submarine geothermal system with reference to their essential amino acids. Appl Environ Microbiol. 1994; 60(8):2898-904. PMC: 201740. DOI: 10.1128/aem.60.8.2898-2904.1994. View

3.
Jannasch H, Wirsen C, Molyneaux S, Langworthy T . Extremely thermophilic fermentative archaebacteria of the genus desulfurococcus from deep-sea hydrothermal vents. Appl Environ Microbiol. 1988; 54(5):1203-9. PMC: 202627. DOI: 10.1128/aem.54.5.1203-1209.1988. View

4.
Siekierka J, Hung S, Poe M, Lin C, Sigal N . A cytosolic binding protein for the immunosuppressant FK506 has peptidyl-prolyl isomerase activity but is distinct from cyclophilin. Nature. 1989; 341(6244):755-7. DOI: 10.1038/341755a0. View

5.
Van Duyne G, Standaert R, Karplus P, Schreiber S, Clardy J . Atomic structures of the human immunophilin FKBP-12 complexes with FK506 and rapamycin. J Mol Biol. 1993; 229(1):105-24. DOI: 10.1006/jmbi.1993.1012. View