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Ultrafast folding of alpha3D: a de novo designed three-helix bundle protein.


ABSTRACT: Here, we describe the folding/unfolding kinetics of alpha3D, a small designed three-helix bundle. Both IR temperature jump and ultrafast fluorescence mixing methods reveal a single-exponential process consistent with a minimal folding time of 3.2 +/- 1.2 micros (at approximately 50 degrees C), indicating that a protein can fold on the 1- to 5-micros time scale. Furthermore, the single-exponential nature of the relaxation indicates that the prefactor for transition state (TS)-folding models is probably >or=1 (micros)-1 for a protein of this size and topology. Molecular dynamics simulations and IR spectroscopy provide a molecular rationale for the rapid, single-exponential folding of this protein. alpha3D shows a significant bias toward local helical structure in the thermally denatured state. The molecular dynamics-simulated TS ensemble is highly heterogeneous and dynamic, allowing access to the TS via multiple pathways.

SUBMITTER: Zhu Y 

PROVIDER: S-EPMC307594 | biostudies-literature | 2003 Dec

REPOSITORIES: biostudies-literature

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Ultrafast folding of alpha3D: a de novo designed three-helix bundle protein.

Zhu Yongjin Y   Alonso Darwin O V DO   Maki Kosuke K   Huang Cheng-Yen CY   Lahr Steven J SJ   Daggett Valerie V   Roder Heinrich H   DeGrado William F WF   Gai Feng F  

Proceedings of the National Academy of Sciences of the United States of America 20031211 26


Here, we describe the folding/unfolding kinetics of alpha3D, a small designed three-helix bundle. Both IR temperature jump and ultrafast fluorescence mixing methods reveal a single-exponential process consistent with a minimal folding time of 3.2 +/- 1.2 micros (at approximately 50 degrees C), indicating that a protein can fold on the 1- to 5-micros time scale. Furthermore, the single-exponential nature of the relaxation indicates that the prefactor for transition state (TS)-folding models is pr  ...[more]

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