energy landscape
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2022 ◽  
Vol 210 ◽  
pp. 114413
Author(s):  
Ning Li ◽  
Christopher M Dmuchowski ◽  
Yingchun Jiang ◽  
Chenglin Yi ◽  
Feilin Gou ◽  
...  

2022 ◽  
Author(s):  
Sukjin Steve Jang ◽  
Sarah Dubnik ◽  
Jason Hon ◽  
Colin Nuckolls ◽  
Ruben L Gonzalez

We have developed and used high-time-resolution, single-molecule field-effect transistors (smFETs) to characterize the con-formational free-energy landscape of RNA stem-loops. Stem-loops are some of the most common RNA structural motifs and serve as building blocks for the formation of more complex RNA structures. Given their prevalence and integral role in RNA folding, the kinetics of stem-loop (un)folding has been extensively characterized using both experimental and computational approaches. Interestingly, these studies have reported vastly disparate timescales of (un)folding, which has been recently in-terpreted as evidence that (un)folding of even simple stem-loops occurs on a highly rugged conformational energy landscape. Because smFETs do not rely on fluorophore reporters of conformation or on the application of mechanical (un)folding forces, they provide a unique and complementary approach that has allowed us to directly monitor tens of thousands of (un)folding events of individual stem-loops at a 200 μs time resolution. Our results show that under our experimental conditions, stem-loops fold and unfold over a 1-200 ms timescale during which they transition between ensembles of unfolded and folded conformations, the latter of which is composed of at least two sub-populations. The 1-200 ms timescale of (un)folding we observe here indicates that smFETs report on complete (un)folding trajectories in which relatively extended unfolded con-formations of the RNA spend long periods of time wandering the free-energy landscape before sampling one of several mis-folded conformations or, alternatively, the natively folded conformation. Our findings demonstrate how the combination of single-molecule sensitivity and high time resolution makes smFETs unique and powerful tools for characterizing the con-formational free-energy landscape of RNA and highlight the extremely rugged landscape on which even the simplest RNA structural elements fold.


2022 ◽  
Vol 105 (1) ◽  
Author(s):  
David C. Harrison ◽  
E. Dan Dahlberg ◽  
Raymond L. Orbach

Author(s):  
Yue Gui ◽  
Yingdi Jin ◽  
Shigang Ruan ◽  
Guangxu Sun ◽  
Vilmalí López-Mejías ◽  
...  

2022 ◽  
Author(s):  
Fanjun Li ◽  
Monifa Fahie ◽  
Kaitlyn Gilliam ◽  
Ryan Pham ◽  
Min Chen

Abstract Protein kinases play central roles in cellular regulation by catalyzing the phosphorylation of target proteins. Kinases have inherent structural flexibility allowing them to switch between active and inactive states. Quantitative characterization of kinase conformational dynamics is challenging. Here we used nanopore tweezers to access the conformational dynamics of Abl kinase domain, which was shown to interconvert between two major conformational states where one conformation comprises three sub-states. Analysis of kinase-substrate and kinase-inhibitor interactions uncovered the functional roles of relevant states and enabled the elucidation of the mechanism underlying the catalytic deficiency of an inactive Abl mutant G321V. The energy landscape of Abl kinase was revealed by quantifying the population and transition rates of the conformational states.


Author(s):  
Chen Ming ◽  
Han Wang ◽  
Damien West ◽  
Shengbai Zhang ◽  
Yi-Yang Sun

Lead halide perovskites have been intensively developed to be high-performance photovoltaic and optoelectronic materials, where the unique defect tolerance property is believed to contribute to their excellence. However, the defect...


Author(s):  
Murilo N. Sanches ◽  
Kaitlin Knapp ◽  
Antonio B. Oliveira ◽  
Peter G. Wolynes ◽  
José N. Onuchic ◽  
...  

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