Literature DB >> 34458436

Aggregation Prevention Assay for Chaperone Activity of Proteins Using Spectroflurometry.

Manish Bhuwan1, Madhuri Suragani2, Nasreen Z Ehtesham3, Seyed E Hasnain1,4,5.   

Abstract

The ability to stabilize other proteins against thermal aggregation is one of the major characteristics of chaperone proteins. Molecular chaperones bind to nonnative conformations of proteins. Folding of the substrate is triggered by a dynamic association and dissociation cycles which keep the substrate protein on track of the folding pathway (Figure 1). Usually molecular chaperones exhibit differential affinities with different conformations of the substrate. With the exception of the sHsp family of molecular chaperones, the shift from a high-affinity binding state to the low-affinity release state is triggered by ATP binding and hydrolysis (Haselback and Buchner, 2015). Aggregation prevention assay is a simple, yet definitive assay to determine the chaperone activity of heat labile proteins such as Maltodextrin glucosidase (MalZ), Citrate Synthase (CS) and NdeI. This is based on the premise that proteins with chaperone like activity should prevent protein substrates (MalZ, CS and NdeI) from thermal aggregation. Here, we describe a detailed protocol for aggregation prevention assay using two different chaperone proteins, resistin and MoxR1, identified from our lab. Resistin, a human protein (hRes) and MoxR1 a Mycobacterium tuberculosis protein were analysed for their effect on prevention of MalZ/Citrate Synthase (CS)/NdeI aggregation. Figure 1.Mechanism of action of molecular chaperones. Citrate synthase folds via increasingly structured intermediates (I1, I2) from the unfolded state (U) to the folded state (N). Under heat shock conditions, this process is reversed.
Copyright © 2017 The Authors; exclusive licensee Bio-protocol LLC.

Entities:  

Keywords:  ATPase activity assay; GroEL; Molecular chaperone; MoxR1; Refolding of Enzymes & Proteins; Resistin proteins; Thermal aggregation prevention

Year:  2017        PMID: 34458436      PMCID: PMC8376500          DOI: 10.21769/BioProtoc.2107

Source DB:  PubMed          Journal:  Bio Protoc        ISSN: 2331-8325


  4 in total

1.  Assays to characterize molecular chaperone function in vitro.

Authors:  Martin Haslbeck; Johannes Buchner
Journal:  Methods Mol Biol       Date:  2015

2.  Human resistin, a proinflammatory cytokine, shows chaperone-like activity.

Authors:  Madhuri Suragani; Varma D Aadinarayana; Aleem Basha Pinjari; Karunakar Tanneeru; Lalitha Guruprasad; Sharmistha Banerjee; Saurabh Pandey; Tapan K Chaudhuri; Nasreen Zafar Ehtesham
Journal:  Proc Natl Acad Sci U S A       Date:  2013-11-26       Impact factor: 11.205

3.  Irreversible denaturation of maltodextrin glucosidase studied by differential scanning calorimetry, circular dichroism, and turbidity measurements.

Authors:  Megha Goyal; Tapan K Chaudhuri; Kunihiro Kuwajima
Journal:  PLoS One       Date:  2014-12-30       Impact factor: 3.240

4.  Interaction of Mycobacterium tuberculosis Virulence Factor RipA with Chaperone MoxR1 Is Required for Transport through the TAT Secretion System.

Authors:  Manish Bhuwan; Naresh Arora; Ashish Sharma; Mohd Khubaib; Saurabh Pandey; Tapan Kumar Chaudhuri; Seyed Ehtesham Hasnain; Nasreen Zafar Ehtesham
Journal:  MBio       Date:  2016-03-01       Impact factor: 7.867

  4 in total

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