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Conformational landscape of cytochrome c folding studied by microsecond-resolved small-angle x-ray scattering

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NATL ACAD SCIENCES
DOI: 10.1073/pnas.012458999

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To investigate protein folding dynamics in terms of compactness, we developed a continuous-flow mixing device to make small-angle x-ray scattering measurements with the time resolution of 160 mus and characterized the radius of gyration (R-g) of two folding intermediates of cytochrome c (cyt c). The early intermediate possesses approximate to20 Angstrom of R-g, which is smaller by approximate to4 Angstrom than that of the acid-unfolded state. The R-g of the later intermediate is approximate to18 Angstrom, which is close to that of the molten globule state. Considering the alpha-helix content (f(H)) of the intermediates, we clarified the folding pathway of cyt c on the conformational landscape defined by R-g and f(H). Cyt c folding proceeds with a collapse around a specific region of the protein followed by a cooperative acquisition of secondary structures and compactness.

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