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Mol Cell Biochem ; 308(1-2): 85-91, 2008 Jan.
Article in English | MEDLINE | ID: mdl-17909943

ABSTRACT

In human lenses, C-terminal cleavage of alphaA-crystallin at residues 172,168, and 162 have been reported. The effect of C-terminal truncation of alphaA-crystallin on subunit exchange and heterooligomer formation with alphaB-crystallin and homooligomer formation with native alphaA-crystallin is not known. We have conducted fluorescence resonance energy transfer studies which have shown that the rates of subunit exchange of alphaA(1-172 )and alphaA(1-168 )with alphaB-wt were two-fold lower than for alphaA-wt interacting with alphaB-wt. The subunit exchange rate between alphaA(1-162) and alphaB-wt was six-fold lower. These data suggest that cleavage of the C-terminal residues could significantly affect heterooligomerization. On the other hand, the subunit exchange rates between alphaA-wt and the truncated alphaA-crystallins were either unchanged or only slightly decreased, which suggest that homooligomerization may not be significantly influenced by C-terminal truncation. The main conclusion from this study is that cleavage of C-terminal residues of alphaA-crystallin including the nine residues of the flexible tail is expected to significantly affect the formation of heteroaggregates. Reconstitution experiments showed that the presence of an intact C-terminus is essential for the formation of fully integrated heteroaggregates with equal proportion of alphaA and alphaB subunits.


Subject(s)
Mutant Proteins/metabolism , Protein Subunits/metabolism , alpha-Crystallin A Chain/chemistry , alpha-Crystallin A Chain/metabolism , alpha-Crystallin B Chain/chemistry , alpha-Crystallin B Chain/metabolism , Chromatography, High Pressure Liquid , Electrophoresis, Polyacrylamide Gel , Fluorescence , Fluorescence Resonance Energy Transfer , Humans , Kinetics , Molecular Weight , Protein Binding , Protein Structure, Quaternary , Time Factors
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