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Updated: Feb 27, 2026

Microfluidic Mixers for Studying Protein Folding
Published on: April 10, 2012
Transiently disordered tails accelerate folding of globular proteins
Saurav Mallik1,2, Tanaya Ray3, Sudip Kundu1,2
1Department of Biophysics, Molecular Biology and Bioinformatics, University of Calcutta, India.
Abstract:
Numerous biological proteins exhibit intrinsic disorder at their termini, which are associated with multifarious functional roles. Here, we show the surprising result that an increased percentage of terminal short transiently disordered regions with enhanced flexibility (TstDREF) is associated with accelerated folding rates of globular proteins. Evolutionary conservation of predicted disorder at TstDREFs and drastic alteration of folding rates upon point-mutations suggest critical regulatory role(s) of TstDREFs in shaping the folding kinetics. TstDREFs are associated with long-range intramolecular interactions and the percentage of native secondary structural elements physically contacted by TstDREFs exhibit another surprising positive correlation with folding kinetics. These results allow us to infer probable molecular mechanisms behind the TstDREF-mediated regulation of folding kinetics that challenge protein biochemists to assess by direct experimental testing.
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