4.7 Article

The alternatively folded state of the antibody CH3 domain

Journal

JOURNAL OF MOLECULAR BIOLOGY
Volume 309, Issue 5, Pages 1077-1085

Publisher

ACADEMIC PRESS LTD
DOI: 10.1006/jmbi.2001.4707

Keywords

antibody structure; folding; molten globule; protein stability; immunoglobulin fold

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The C(H)3 domain of antibodies is characterized by two antiparallel beta -sheets forming a disulfide-linked sandwich-like structure. At acidic pH values and low ionic strength, C(H)3 becomes completely unfolded. The addition of salt transforms the acid-unfolded protein into an alternatively folded state exhibiting a characteristic secondary structure. The transition from native to alternatively folded C(H)3 is a fast reaction. Interestingly, this reaction involves the formation of a defined oligomer consisting of 12-14 subunits. Association is completely reversible and the native dimer is quantitatively reformed at neutral pH. This alternatively folded protein is remarkably stable against thermal and chemical denaturation and the unfolding transitions are highly cooperative. With a t(m) of 80 degreesC, the stability of the alternatively folded state is comparable to that of the native state of C(H)3. The defined oligomeric structure of C(H)3 at pH 2 seems to be a prerequisite for the cooperative unfolding transitions. (C) 2001 Academic Press.

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