Probing Single Chaperone Substrates

Author:

Wruck F.12,Avellaneda M. J.13,Naqvi M. M.14,Koers E. J.15,Till K.1,Gross L.1,Moayed F.1,Roland A.1,Heling L. W. H. J.67,Mashaghi A.67,Tans S. J.18

Affiliation:

1. aAMOLF, Science Park 104, 1098 XG Amsterdam, The Netherlands

2. bLUMICKS BV, Amsterdam, The Netherlands

3. cInstitute of Science and Technology Austria, Am Campus 1, Klosterneuburg 3400, Austria

4. dDepartment of Pharmacology, University of Cambridge, CB2 1PD Cambridge, UK

5. eCentre of Membrane Proteins and Receptors (COMPARE), University of Birmingham and University of Nottingham, Midlands, UK

6. fMedical Systems Biophysics and Bioengineering, Leiden Academic Centre for Drug Research, Faculty of Science, Leiden University, 2333CC, Leiden, The Netherlands

7. gCentre for Interdisciplinary Genome Research, Faculty of Science, Leiden University, Einsteinweg 55, 2333CC Leiden, The Netherlands

8. hBionanoscience Department of Delft University of Technology and Kavli Institute of Nanoscience Delft, 2629HZ Delft, The Netherlands

Abstract

Regulating protein states is considered the core function of chaperones. However, despite their importance to all major cellular processes, the conformational changes that chaperones impart on polypeptide chains are difficult to study directly due to their heterogeneous, dynamic, and multi-step nature. Here, we review recent advances towards this aim using single-molecule manipulation methods, which are rapidly revealing new mechanisms of conformational control and helping to define a different perspective on the chaperone function.

Publisher

Royal Society of Chemistry

Reference209 articles.

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