Observation of Continuous Contraction and a Metastable Misfolded State during the Collapse and Folding of a Small Protein. Issue 19 (6th September 2019)
- Record Type:
- Journal Article
- Title:
- Observation of Continuous Contraction and a Metastable Misfolded State during the Collapse and Folding of a Small Protein. Issue 19 (6th September 2019)
- Main Title:
- Observation of Continuous Contraction and a Metastable Misfolded State during the Collapse and Folding of a Small Protein
- Authors:
- Bhatia, Sandhya
Krishnamoorthy, G.
Dhar, Deepak
Udgaonkar, Jayant B. - Abstract:
- Abstract: To obtain proper insight into how structure develops during a protein folding reaction, it is necessary to understand the nature and mechanism of the polypeptide chain collapse reaction, which marks the initiation of folding. Here, the time-resolved fluorescence resonance energy transfer technique, in which the decay of the fluorescence light intensity with time is used to determine the time evolution of the distribution of intra-molecular distances, has been utilized to study the folding of the small protein, monellin. It is seen that when folding begins, about one-third of the protein molecules collapse into a molten globule state (IMG ), from which they relax by continuous further contraction to transit to the native state. The larger fraction gets trapped into a metastable misfolded state. Exit from this metastable state occurs via collapse to the lower free energy IMG state. This exit is slow, on a time scale of seconds, because of activation energy barriers. The trapped misfolded molecules as well as the IMG molecules contract continuously and slowly as structure develops. A phenomenological model of Markovian evolution of the polymer chain undergoing folding, incorporating these features, has been developed, which fits well the experimentally observed time evolution of distance distributions. The observation that the "wrong turn" to the misfolded state has not been eliminated by evolution belies the common belief that the folding of functional proteinAbstract: To obtain proper insight into how structure develops during a protein folding reaction, it is necessary to understand the nature and mechanism of the polypeptide chain collapse reaction, which marks the initiation of folding. Here, the time-resolved fluorescence resonance energy transfer technique, in which the decay of the fluorescence light intensity with time is used to determine the time evolution of the distribution of intra-molecular distances, has been utilized to study the folding of the small protein, monellin. It is seen that when folding begins, about one-third of the protein molecules collapse into a molten globule state (IMG ), from which they relax by continuous further contraction to transit to the native state. The larger fraction gets trapped into a metastable misfolded state. Exit from this metastable state occurs via collapse to the lower free energy IMG state. This exit is slow, on a time scale of seconds, because of activation energy barriers. The trapped misfolded molecules as well as the IMG molecules contract continuously and slowly as structure develops. A phenomenological model of Markovian evolution of the polymer chain undergoing folding, incorporating these features, has been developed, which fits well the experimentally observed time evolution of distance distributions. The observation that the "wrong turn" to the misfolded state has not been eliminated by evolution belies the common belief that the folding of functional protein sequences is very different from that of a random heteropolymer, and the former have been selected by evolution to fold quickly. Graphical abstract: Unlabelled Image … (more)
- Is Part Of:
- Journal of molecular biology. Volume 431:Issue 19(2019)
- Journal:
- Journal of molecular biology
- Issue:
- Volume 431:Issue 19(2019)
- Issue Display:
- Volume 431, Issue 19 (2019)
- Year:
- 2019
- Volume:
- 431
- Issue:
- 19
- Issue Sort Value:
- 2019-0431-0019-0000
- Page Start:
- 3814
- Page End:
- 3826
- Publication Date:
- 2019-09-06
- Subjects:
- MNEI single-chain monellin -- GdnHCl guanidine hydrochloride -- FRET fluorescence resonance energy transfer -- TNB thionitrobenzoate -- MG molten globule -- SAXS small-angle x-ray scattering
monellin -- collapse -- time-resolved FRET -- heterogeneity -- Markovian
Molecular biology -- Periodicals
Biology -- Periodicals
Biochemistry -- Periodicals
Bacteriology -- Periodicals
Molecular Biology -- Periodicals
Biochemistry -- Periodicals
Biologie moléculaire -- Périodiques
Biologie -- Périodiques
Biochimie -- Périodiques
Moleculaire biologie
Biochemistry
Biology
Molecular biology
Periodicals
572.805 - Journal URLs:
- http://www.sciencedirect.com/science/journal/00222836 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.jmb.2019.07.024 ↗
- Languages:
- English
- ISSNs:
- 0022-2836
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5020.700000
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