Thermal stabilization of thymidylate synthase by engineering two disulfide bridges across the dimer interface

Gokhale, Rajesh S. ; Agarwalla, Sanjay ; Francis, V. S. ; Santi, Daniel V. ; Balaram, P. (1994) Thermal stabilization of thymidylate synthase by engineering two disulfide bridges across the dimer interface Journal of Molecular Biology, 235 (1). pp. 89-94. ISSN 0022-2836

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Official URL: http://linkinghub.elsevier.com/retrieve/pii/S00222...

Related URL: http://dx.doi.org/10.1016/S0022-2836(05)80018-X

Abstract

Thermal inactivation of oligomeric enzymes is most often irreversible and is frequently accompanied by precipitation. We have engineered two symmetry related disulfide bridges (155-188′ and 188-155′) across the subunit interface of Lactobacillus casei thymidylate synthase, at sites chosen on the basis of an algorithm for the introduction of stereochemically unstrained bridges into proteins. In this communication, we demonstrate a remarkable enhancement in the thermal stability of the covalently cross-linked double disulfide containing dimeric enzyme. The mutant enzyme remains soluble and retains secondary structure even at 90°C, in contrast to the wild-type enzyme which precipitates at 52°C. Furthermore, the mutant enzyme has a temperature optimum of 55°C and possesses appreciable enzymatic activity at 65°C. Cooling restores complete activity, in the mutant protein, demonstrating reversible thermal unfolding. The results suggest that inter-subunit crosslinks can impart appreciable thermal stability in multimeric enzymes.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:Thymidylate synthase; Thermal Stabilization; Engineered Disulfides; Precipitation; Dimeric Enzyme
ID Code:4312
Deposited On:13 Oct 2010 09:55
Last Modified:16 May 2016 14:59

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