Subnanometre enzyme mechanics probed by single-molecule force spectroscopy

被引:0
作者
Benjamin Pelz
Gabriel Žoldák
Fabian Zeller
Martin Zacharias
Matthias Rief
机构
[1] Technische Universität München,Physik Department E22
[2] Technische Universität München,Physik Department T38
[3] Munich Center for Integrated Protein Science,undefined
来源
Nature Communications | / 7卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Enzymes are molecular machines that bind substrates specifically, provide an adequate chemical environment for catalysis and exchange products rapidly, to ensure fast turnover rates. Direct information about the energetics that drive conformational changes is difficult to obtain. We used subnanometre single-molecule force spectroscopy to study the energetic drive of substrate-dependent lid closing in the enzyme adenylate kinase. Here we show that in the presence of the bisubstrate inhibitor diadenosine pentaphosphate (AP5A), closing and opening of both lids is cooperative and tightly coupled to inhibitor binding. Surprisingly, binding of the substrates ADP and ATP exhibits a much smaller energetic drive towards the fully closed state. Instead, we observe a new dominant energetic minimum with both lids half closed. Our results, combining experiment and molecular dynamics simulations, give detailed mechanical insights into how an enzyme can cope with the seemingly contradictory requirements of rapid substrate exchange and tight closing, to ensure efficient catalysis.
引用
收藏
相关论文
共 50 条
[21]   Subnanometre single-molecule localization, registration and distance measurements [J].
Alexandros Pertsinidis ;
Yunxiang Zhang ;
Steven Chu .
Nature, 2010, 466 :647-651
[22]   SPECTRAL DIFFUSION IN AN AMORPHOUS POLYMER PROBED BY SINGLE-MOLECULE SPECTROSCOPY [J].
TITTEL, J ;
KETTNER, R ;
BASCHE, T ;
BRAUCHLE, C ;
QUANTE, H ;
MULLEN, K .
JOURNAL OF LUMINESCENCE, 1995, 64 (1-6) :1-11
[23]   The citrate carrier CitS probed by single-molecule fluorescence spectroscopy [J].
Kästner, CN ;
Prummer, M ;
Sick, B ;
Renn, A ;
Wild, UP ;
Dimroth, P .
BIOPHYSICAL JOURNAL, 2003, 84 (03) :1651-1659
[24]   FORCE TO UNBIND LIGAND-RECEPTOR COMPLEXES AND THE INTERNAL RIGIDITY OF GLOBULAR PROTEINS PROBED BY SINGLE-MOLECULE FORCE SPECTROSCOPY [J].
Ikai, Atsushi ;
Afrin, Rehana ;
Sekiguchi, Hiroshi .
SINGLE-MOLECULE BIOPHYSICS: EXPERIMENT AND THEORY, VOL 146, 2012, 146 :71-88
[25]   Multiple Unfolding Pathways of Leucine Binding Protein (LBP) Probed by Single-Molecule Force Spectroscopy (SMFS) [J].
Kotamarthi, Hema Chandra ;
Sharma, Riddhi ;
Narayan, Satya ;
Ray, Sayoni ;
Ainavarapu, Sri Rama Koti .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2013, 135 (39) :14768-14774
[26]   Extreme mechanical diversity of human telomeric DNA probed by single-molecule fluorescence-force spectroscopy [J].
Mitra, Jaba ;
Makurath, Monika ;
Thuy Ngo ;
Troitskaia, Alice ;
Chemla, Yann ;
Ha, Taekjip .
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 258
[27]   AFM IMAGING AND SINGLE-MOLECULE FORCE SPECTROSCOPY STUDIES ON MACROMOLECULAR INTERACTIONS AT SINGLE-MOLECULE LEVEL [J].
Zhang Wenke .
ACTA POLYMERICA SINICA, 2011, (09) :913-922
[28]   Combining in Vitro and in Silico Single-Molecule Force Spectroscopy to Characterize and Tune Cellulosomal Scaffoldin Mechanics [J].
Verdorfer, Tobias ;
Bernardi, Rafael C. ;
Meinhold, Aylin ;
Ott, Wolfgang ;
Luthey-Schulten, Zaida ;
Nash, Michael A. ;
Gaub, Hermann E. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (49) :17841-17852
[29]   Force-conductance spectroscopy of a single-molecule reaction [J].
Mejia, Leopoldo ;
Franco, Ignacio .
CHEMICAL SCIENCE, 2019, 10 (11) :3249-3256
[30]   Single-molecule force spectroscopy: Heterogeneity of chemical bonds [J].
Raible, M ;
Reimann, P .
EUROPHYSICS LETTERS, 2006, 73 (04) :628-634