Spectroscopic and differential scanning calorimetric studies on the unfolding of Trichosanthes dioica seed lectin. similar modes of thermal and chemical denaturation

Kavitha, M. ; Swamy, Musti J. (2009) Spectroscopic and differential scanning calorimetric studies on the unfolding of Trichosanthes dioica seed lectin. similar modes of thermal and chemical denaturation Glycoconjugate Journal, 26 (8). pp. 1075-1084. ISSN 0282-0080

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Official URL: http://www.springerlink.com/content/b29m0t0j46vpr4...

Related URL: http://dx.doi.org/10.1007/s10719-009-9228-y

Abstract

Physico-chemical and unfolding studies have been carried out on Trichosanthes dioica seed lectin (TDSL). The lectin exhibited maximum activity between pH 7.0 and 10.0, which decreased steeply at lower pH. The hemagglutination activity of TDSL was unaffected in the temperature range 4-50°C, but decreased rapidly at higher temperatures. Differential scanning calorimetric studies indicate that thermal unfolding of TDSL is an irreversible process, which could be described by a three-state model. The calorimetric scan recorded at pH 7.0 consists of two transitions, occurring at around 338.6 K, and 342.8 K. In the presence of carbohydrate ligands both these transitions shifted to higher temperatures, suggesting that ligand binding stabilizes the native conformation of the protein. The unfolding temperature was highest at pH 5.0 indicating that TDSL is more stable at acidic pH. Gdn.HCl induced unfolding, monitored by following changes in the intrinsic fluorescence properties of the protein, was also observed to be a three-state process involving an intermediate. CD spectroscopy indicates that the secondary and tertiary structures of TDSL are rather similar at different pH values, indicating that the lectin structure remains essentially unchanged over a wide range of pH.

Item Type:Article
Source:Copyright of this article belongs to Springer.
Keywords:Agglutinin; Carbohydrate Binding Protein; Thermal Unfolding; Van't Hoff Enthalpy; Calorimetric Enthalpy; Chemical Denaturation
ID Code:54250
Deposited On:11 Aug 2011 11:19
Last Modified:11 Aug 2011 11:19

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