Literature DB >> 29959230

Spontaneous refolding of the large multidomain protein malate synthase G proceeds through misfolding traps.

Vipul Kumar1, Tapan K Chaudhuri2.   

Abstract

Most protein folding studies until now focus on single domain or truncated proteins. Although great insights in the folding of such systems has been accumulated, very little is known regarding the proteins containing multiple domains. It has been shown that the high stability of domains, in conjunction with inter-domain interactions, manifests as a frustrated energy landscape, causing complexity in the global folding pathway. However, multidomain proteins despite containing independently foldable, loosely cooperative sections can fold into native states with amazing speed and accuracy. To understand the complexity in mechanism, studies were conducted previously on the multidomain protein malate synthase G (MSG), an enzyme of the glyoxylate pathway with four distinct and adjacent domains. It was shown that the protein refolds to a functionally active intermediate state at a fast rate, which slowly produces the native state. Although experiments decoded the nature of the intermediate, a full description of the folding pathway was not elucidated. In this study, we use a battery of biophysical techniques to examine the protein's folding pathway. By using multiprobe kinetics studies and comparison with the equilibrium behavior of protein against urea, we demonstrate that the unfolded polypeptide undergoes conformational compaction to a misfolded intermediate within milliseconds of refolding. The misfolded product appears to be stabilized under moderate denaturant concentrations. Further folding of the protein produces a stable intermediate, which undergoes partial unfolding-assisted large segmental rearrangements to achieve the native state. This study reveals an evolved folding pathway of the multidomain protein MSG, which involves surpassing the multiple misfolding traps during refolding.
© 2018 Kumar and Chaudhuri.

Entities:  

Keywords:  aggregation; chevron plot; domain diffusion; kinetic modeling; misfolded intermediates; multidomain protein; protein conformation; protein dynamic; protein folding; protein misfolding

Mesh:

Substances:

Year:  2018        PMID: 29959230      PMCID: PMC6109912          DOI: 10.1074/jbc.RA118.003903

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  52 in total

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Journal:  J Mol Biol       Date:  2006-12-15       Impact factor: 5.469

3.  Chaperones GroEL/GroES accelerate the refolding of a multidomain protein through modulating on-pathway intermediates.

Authors:  Vinay Dahiya; Tapan K Chaudhuri
Journal:  J Biol Chem       Date:  2013-11-18       Impact factor: 5.157

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Journal:  Fold Des       Date:  1998

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Journal:  J Mol Biol       Date:  1998-04-10       Impact factor: 5.469

6.  Interdomain side-chain interactions in human gammaD crystallin influencing folding and stability.

Authors:  Shannon L Flaugh; Melissa S Kosinski-Collins; Jonathan King
Journal:  Protein Sci       Date:  2005-08       Impact factor: 6.725

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8.  Structure of the Escherichia coli malate synthase G:pyruvate:acetyl-coenzyme A abortive ternary complex at 1.95 A resolution.

Authors:  David M Anstrom; Karen Kallio; S James Remington
Journal:  Protein Sci       Date:  2003-09       Impact factor: 6.725

9.  Topology and sequence in the folding of a TIM barrel protein: global analysis highlights partitioning between transient off-pathway and stable on-pathway folding intermediates in the complex folding mechanism of a (betaalpha)8 barrel of unknown function from B. subtilis.

Authors:  William R Forsyth; Osman Bilsel; Zhenyu Gu; C Robert Matthews
Journal:  J Mol Biol       Date:  2007-06-14       Impact factor: 5.469

10.  Structural Determinants of Misfolding in Multidomain Proteins.

Authors:  Pengfei Tian; Robert B Best
Journal:  PLoS Comput Biol       Date:  2016-05-10       Impact factor: 4.475

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  1 in total

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Authors:  Michela Bollati; Luisa Diomede; Toni Giorgino; Carmina Natale; Elisa Fagnani; Irene Boniardi; Alberto Barbiroli; Rebecca Alemani; Marten Beeg; Marco Gobbi; Ana Fakin; Eloise Mastrangelo; Mario Milani; Gianluca Presciuttini; Edi Gabellieri; Patrizia Cioni; Matteo de Rosa
Journal:  Comput Struct Biotechnol J       Date:  2021-11-19       Impact factor: 7.271

  1 in total

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