login

Formation of a Molten Globule Intermediate Early in the Kinetic Folding Pathway of Apomyoglobin

SciencePublished 5 November 1993
Patricia A. Jennings, Peter E. Wright
Citations733
SJR quartileQ1
SJR score10.42
SNIP6.62

TL;DR

Hydrogen exchange pulse labeling and stopped-flow circular dichroism were used to establish that the structure of the earliest detectable intermediate formed during refolding of apomyoglobin corresponds closely to that of a previously characterized equilibrium molten globule.

Abstract

Hydrogen exchange pulse labeling and stopped-flow circular dichroism were used to establish that the structure of the earliest detectable intermediate formed during refolding of apomyoglobin corresponds closely to that of a previously characterized equilibrium molten globule. This compact, cooperatively folded intermediate was formed in less than 5 milliseconds and contained stable, hydrogen-bonded secondary structure localized in the A, G, and H helices and part of the B helix. The remainder of the B helix folded on a much slower time scale, followed by the C and E helices and the CD loop. The data indicate that a molten globule intermediate was formed on the kinetic folding pathway.

Keywords

Materials ScienceBiochemistry, Genetics and Molecular Biology