Literature DB >> 10076001

Identification, cloning and expression of p25, an AT-rich DNA-binding protein from the extreme thermophile, Thermus aquaticus YT-1.

X Du1, J J Pène.   

Abstract

Although the G+C content of Thermus aquaticus YT-1 chromosomal DNA is 67.4%, regions with lower G+C content have also been observed. AT-rich DNA-binding proteins may contribute to the thermostability and biological functions of these DNA regions at Thermus growth temperatures. Using double-stranded DNA (dsDNA)-cellulose chromatography, a T.aquaticus YT-1 protein, designated as p25, was identified to bind preferentially to AT-rich DNA. The gene encoding p25 was cloned and sequenced after immunoscreening T.aquaticus YT-1 expression libraries. The deduced primary structure of p25 is 211 amino acids in length with a molecular weight of 23 225 Da. Native p25 was purified and characterized as a homodimer with modification possibly at lysine and arginine residues. Its preferential and temperature-dependent binding to AT-rich DNA was confirmed with mobility-shift DNA-binding assays. The protein was demonstrated to bind preferentially to dsDNA instead of single-stranded DNA. The binding of p25 to dsDNA also improved the thermotolerence of this protein. Overexpression study of fusion p25 suggested that the N-terminus of the protein might form the DNA-binding domain or be closely involved in DNA-binding activity.

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Year:  1999        PMID: 10076001      PMCID: PMC148373          DOI: 10.1093/nar/27.7.1690

Source DB:  PubMed          Journal:  Nucleic Acids Res        ISSN: 0305-1048            Impact factor:   16.971


  8 in total

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Authors:  Shuning Wang; Haiyan Huang; Johanna Moll; Rudolf K Thauer
Journal:  J Bacteriol       Date:  2010-07-30       Impact factor: 3.490

3.  Rex (encoded by DVU_0916) in Desulfovibrio vulgaris Hildenborough is a repressor of sulfate adenylyl transferase and is regulated by NADH.

Authors:  G A Christensen; G M Zane; A E Kazakov; X Li; D A Rodionov; P S Novichkov; I Dubchak; A P Arkin; J D Wall
Journal:  J Bacteriol       Date:  2014-10-13       Impact factor: 3.490

4.  Circadian Oscillations of NADH Redox State Using a Heterologous Metabolic Sensor in Mammalian Cells.

Authors:  Guocun Huang; Yunfeng Zhang; Yongli Shan; Shuzhang Yang; Yogarany Chelliah; Han Wang; Joseph S Takahashi
Journal:  J Biol Chem       Date:  2016-09-19       Impact factor: 5.157

5.  A novel sensor of NADH/NAD+ redox poise in Streptomyces coelicolor A3(2).

Authors:  Dimitris Brekasis; Mark S B Paget
Journal:  EMBO J       Date:  2003-09-15       Impact factor: 11.598

6.  Redox sensing by a Rex-family repressor is involved in the regulation of anaerobic gene expression in Staphylococcus aureus.

Authors:  Martin Pagels; Stephan Fuchs; Jan Pané-Farré; Christian Kohler; Leonhard Menschner; Michael Hecker; Peter J McNamarra; Mikael C Bauer; Claes von Wachenfeldt; Manuel Liebeke; Michael Lalk; Gunnar Sander; Christof von Eiff; Richard A Proctor; Susanne Engelmann
Journal:  Mol Microbiol       Date:  2010-03-30       Impact factor: 3.501

7.  The rate and character of spontaneous mutation in Thermus thermophilus.

Authors:  Reena R Mackwan; Geraldine T Carver; Grace E Kissling; John W Drake; Dennis W Grogan
Journal:  Genetics       Date:  2008-08-24       Impact factor: 4.562

8.  Hyaluronan production and molecular weight is enhanced in pathway-engineered strains of lactate dehydrogenase-deficient Lactococcus lactis.

Authors:  Mandeep Kaur; Guhan Jayaraman
Journal:  Metab Eng Commun       Date:  2016-01-22
  8 in total

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