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Observing Lysozymes Closing and Opening Motions by High-Resolution Single-Molecule Enzymology

Authors :
O. Tolga Gul
Gregory A. Weiss
Patrick C. Sims
Mariam Iftikhar
Philip G. Collins
Maxim V. Akhterov
Brad L. Corso
Tivoli J. Olsen
Yongki Choi
Source :
Akhterov, MV; Choi, Y; Olsen, TJ; Sims, PC; Iftikhar, M; Gul, OT; et al.(2015). Observing Lysozymes Closing and Opening Motions by High-Resolution Single-Molecule Enzymology. ACS Chemical Biology, 10(6), 1495-1501. doi: 10.1021/cb500750v. UC Irvine: Retrieved from: http://www.escholarship.org/uc/item/45x6n308
Publication Year :
2015
Publisher :
eScholarship, University of California, 2015.

Abstract

© 2015 American Chemical Society. Single-molecule techniques can monitor the kinetics of transitions between enzyme open and closed conformations, but such methods usually lack the resolution to observe the underlying transition pathway or intermediate conformational dynamics. We have used a 1 MHz bandwidth carbon nanotube transistor to electronically monitor single molecules of the enzyme T4 lysozyme as it processes substrate. An experimental resolution of 2 μs allowed the direct recording of lysozymes opening and closing transitions. Unexpectedly, both motions required 37 μs, on average. The distribution of transition durations was also independent of the enzymes state: either catalytic or nonproductive. The observation of smooth, continuous transitions suggests a concerted mechanism for glycoside hydrolysis with lysozymes two domains closing upon the polysaccharide substrate in its active site. We distinguish these smooth motions from a nonconcerted mechanism, observed in approximately 10% of lysozyme openings and closings, in which the enzyme pauses for an additional 40-140 μs in an intermediate, partially closed conformation. During intermediate forming events, the number of rate-limiting steps observed increases to four, consistent with four steps required in the stepwise, arrow-pushing mechanism. The formation of such intermediate conformations was again independent of the enzymes state. Taken together, the results suggest lysozyme operates as a Brownian motor. In this model, the enzyme traces a single pathway for closing and the reverse pathway for enzyme opening, regardless of its instantaneous catalytic productivity. The observed symmetry in enzyme opening and closing thus suggests that substrate translocation occurs while the enzyme is closed.

Details

Language :
English
Database :
OpenAIRE
Journal :
Akhterov, MV; Choi, Y; Olsen, TJ; Sims, PC; Iftikhar, M; Gul, OT; et al.(2015). Observing Lysozymes Closing and Opening Motions by High-Resolution Single-Molecule Enzymology. ACS Chemical Biology, 10(6), 1495-1501. doi: 10.1021/cb500750v. UC Irvine: Retrieved from: http://www.escholarship.org/uc/item/45x6n308
Accession number :
edsair.doi.dedup.....9d7d8a37e328fc7ed084bcaa79e03a70
Full Text :
https://doi.org/10.1021/cb500750v.