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Characterization of Alpha-crystallin-plasma Membrane Binding

Overview
Journal J Biol Chem
Specialty Biochemistry
Date 2000 Feb 29
PMID 10692476
Citations 56
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Abstract

Alpha-crystallin, a large lenticular protein complex made up of two related subunits (alphaA- and alphaB-crystallin), is known to associate increasingly with fiber cell plasma membranes with age and/or the onset of cataract. To understand better the binding mechanism, we developed a sensitive membrane binding assay using lens plasma membranes and recombinant human alphaA- and alphaB-crystallins conjugated to a small fluorescent tag (Alexa350). Both alphaA and alphaB homopolymer complexes, as well as a reconstituted 3:1 heteromeric complex, bind to lens membranes in a specific, saturable, and partially irreversible manner that is sensitive to both time and temperature. The amount of alpha-crystallin that binds to the membrane increases under acidic pH conditions and upon removal of exposed intrinsic membrane protein domains but is not affected at high ionic strength, suggesting that alpha-crystallin binds to the fiber cell plasma membranes mainly through hydrophobic interactions. The binding capacity and affinity for the reconstituted 3:1 heteromeric complex were measured to be 3. 45 +/- 0.11 ng/microg of membrane and 4.57 +/- 0.50 x 10(-4) microg(-1) of membrane, respectively. The present membrane binding data support the hypothesis that the physical properties of a mixed alpha-crystallin complex may hold particular relevance for the function of alpha-crystallin within the lens.

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References
1.
Carver J, Aquilina J, Truscott R . An investigation into the stability of alpha-crystallin by NMR spectroscopy; evidence for a two-domain structure. Biochim Biophys Acta. 1993; 1164(1):22-8. DOI: 10.1016/0167-4838(93)90107-3. View

2.
Das B, Liang J, Chakrabarti B . Heat-induced conformational change and increased chaperone activity of lens alpha-crystallin. Curr Eye Res. 1997; 16(4):303-9. DOI: 10.1076/ceyr.16.4.303.10691. View

3.
van den Oetelaar P, van Someren P, Thomson J, Siezen R, Hoenders H . A dynamic quaternary structure of bovine alpha-crystallin as indicated from intermolecular exchange of subunits. Biochemistry. 1990; 29(14):3488-93. DOI: 10.1021/bi00466a010. View

4.
Borchman D, Tang D . Binding capacity of alpha-crystallin to bovine lens lipids. Exp Eye Res. 1996; 63(4):407-10. DOI: 10.1006/exer.1996.0130. View

5.
Derham B, Harding J . The effects of ageing on the chaperone-like function of rabbit alpha-crystallin, comparing three methods of assay. Biochim Biophys Acta. 1997; 1336(2):187-94. DOI: 10.1016/s0304-4165(97)00029-9. View