
Please use this identifier to cite or link to this item:
http://hdl.handle.net/123456789/212
Title: | Structural and dynamical insights into the molten-globule form of ovalbumin. |
Authors: | Bhattacharya, M. Mukhopadhyay, S. |
Keywords: | Biphasic Conformational change |
Issue Date: | 2012 |
Publisher: | American Chemical Society. |
Citation: | Journal of Physical Chemistry B, 116 (1), pp. 520-531. |
Abstract: | Ovalbumin is a 45 kDa egg-white glycoprotein which belongs to the class of serpin superfamily. We have studied the structural properties of both native and partially unfolded molten-globule forms of ovalbumin using a diverse array of spectroscopic tools. Time-resolved fluorescence measurements provided important structural and dynamical insights into the native and molten-globule states. Fluorescence anisotropy decay analysis indicated that there is a conformational swelling from the native to the molten-globule form of ovalbumin. We have also carried out red-edge excitation shift measurements to probe the dipolar relaxation dynamics around the intrinsic tryptophan residues. Additionally, stopped-flow fluorescence experiments revealed that the conformational transition from the native to the molten-globule form proceeds in a stepwise manner involving a burst-phase with a submillisecond conformational change followed by biphasic slower conformational reorganizations on the millisecond time scale leading to the final molten-globule state. |
URI: | http://pubs.acs.org/doi/abs/10.1021/jp208416d |
Appears in Collections: | Research Articles |
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