Interaction of human recombinant αA- and αB-crystallins with early and late unfolding intermediates of citrate synthase on its thermal denaturation

Rajaraman, K. ; Raman, B. ; Ramakrishna, T. ; Mohan Rao, Ch. (2001) Interaction of human recombinant αA- and αB-crystallins with early and late unfolding intermediates of citrate synthase on its thermal denaturation FEBS Letters, 497 (2-3). pp. 118-123. ISSN 0014-5793

[img]
Preview
PDF - Publisher Version
160kB

Official URL: http://linkinghub.elsevier.com/retrieve/pii/S00145...

Related URL: http://dx.doi.org/10.1016/S0014-5793(01)02451-6

Abstract

We have investigated the role of recombinant human αA- and αB-crystallins in the heat-induced inactivation and aggregation of citrate synthase. Homo-multimers of both αA- and αB-crystallins confer protection against heat-induced inactivation in a concentration-dependent manner and also prevent aggregation. Interaction of crystallins with early unfolding intermediates of citrate synthase reduces their partitioning into aggregation-prone intermediates. This appears to result in enhanced population of early unfolding intermediates that can be reactivated by its substrate, oxaloacetate. Both these homo-multimers do not form a stable complex with the early unfolding intermediates. However, they can form a soluble, stable complex with aggregation-prone late unfolding intermediates. This soluble complex formation prevents aggregation. Thus, it appears that the chaperone activity of α-crystallin involves both transient and stable interactions depending on the nature of intermediates on the unfolding pathway; one leads to reactivation of the enzyme activity while the other prevents aggregation.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:α-Crystallin; Molecular Chaperone; Citrate Synthase; Unfolding Intermediate; Interaction
ID Code:35822
Deposited On:16 Apr 2011 14:10
Last Modified:17 May 2016 18:46

Repository Staff Only: item control page