Amino acid changes in the repressor of bacteriophage lambda due to temperature-sensitive mutations in its cI gene and the structure of a highly temperature-sensitive mutant repressor

Jana, Nandan Kumar ; Roy, Siddhartha ; Bhattacharyya, Bhabatarak ; Mandal, Nitai Chandra (1999) Amino acid changes in the repressor of bacteriophage lambda due to temperature-sensitive mutations in its cI gene and the structure of a highly temperature-sensitive mutant repressor Protein Engineering Design & Selection, 12 (3). pp. 225-233. ISSN 1741-0126

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Official URL: http://peds.oxfordjournals.org/content/12/3/225.ab...

Related URL: http://dx.doi.org/10.1093/protein/12.3.225

Abstract

The mutant cIts genes from seven different λcIts phages carrying tsU50, tsU9, tsU46, ts1, tsU51, tsI-22 and ts2 mutations were cloned in plasmid. The positions of these mutations and the resulting changes of amino acids in the repressor were determined by DNA sequencing. The first four mutations mapping in the N-terminal domain show the following changes: I21S, G53S, A62T and V73A, respectively. Of the three remaining mutations mapping in the C-terminal domain, cItsI-22 and cIts2 show N207T and K224E substitutions respectively, while the mutant cItsU51 gene carries F141I and P153L substitutions. Among these ts repressors, CIts2 having the charge-reversal change K224E was overexpressed from tac promoter in a plasmid and purified, and its structure and function were studied. Operator-binding studies suggest that the ts2 repressor is somewhat defective in monomer-dimer equilibrium and/ or cooperativity even at permissive temperatures and loses its operator-binding ability very rapidly above 25°C. Comparative studies of fluorescence and CD spectra, sulfhydryl group reactivity and elution behaviour in size-exclusion HPLC of both wild-type and ts2-mutant repressors at permissive and non-permissive temperatures suggest that the C-terminal domain of the ts2 repressor carrying a K224E substitution has a structure that does not favor tetramer formation at non-permissive temperatures.

Item Type:Article
Source:Copyright of this article belongs to Oxford University Press.
Keywords:Bacteriophage λ; Lambda Repressor; Structure of λ Repressor; Temperature-sensitive Mutant Repressors of λ
ID Code:26155
Deposited On:06 Dec 2010 13:00
Last Modified:17 May 2016 09:29

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