Transition paths represent the parts of a reaction where the energy barrier separating products and reactants is crossed. They are essential to understanding reaction mechanisms, yet many of their properties remain unstudied. Here, we report measurements of the average shape of transition paths, studying the folding of DNA hairpins as a model system for folding reactions. Individual transition paths were detected in the folding trajectories of hairpins with different sequences held under tension in optical tweezers, and path shapes were computed by averaging all transitions in the time domain, 〈()〉, or by averaging transitions of a given duration in the extension domain, 〈(|)〉 Whereas 〈()〉 was close to straight, with only a subtle curvature, 〈(|)〉 had more pronounced curvature that fit well to theoretical expectations for the dominant transition path, returning diffusion coefficients similar to values obtained previously from independent methods. Simulations suggested that 〈()〉 provided a less reliable representation of the path shape than 〈(|)〉 , because it was far more sensitive to the effects of coupling the molecule to the experimental force probe. Intriguingly, the path shape variance was larger for some hairpins than others, indicating sequence-dependent changes in the diversity of transition paths reflective of differences in the character of the energy barriers, such as the width of the barrier saddle-point or the presence of parallel paths through multiple barriers between the folded and unfolded states. These studies of average path shapes point the way forward for probing the rich information contained in path shape fluctuations.
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http://dx.doi.org/10.1073/pnas.1816602116 | DOI Listing |
J Couns Psychol
January 2025
School of Marxism, Central University of Finance and Economics.
Rural first-generation college students (FGCS) face significant barriers as they transition into the world of work, yet no studies have explored their career development using psychology of working theory (PWT). The present study aimed to examine the predictor and outcome portions of PWT with a sample of FGCS from rural China. We administered online surveys to 549 participants and employed structural equation modeling to analyze the data.
View Article and Find Full Text PDFNat Commun
January 2025
School of Environmental and Chemical Engineering, Wuyi University, Jiangmen, PR China.
Developing efficient strategies for the deoxygenative functionalization of carbonyl compounds is crucial for enhancing the effective utilization of biomass and the upgrading of chemical feedstocks. In this study, we present an elegant cathodic reduction strategy that enables a tandem alkylation/dearomatization reaction between quinoline derivatives and aryl aldehydes/ketones in a one-pot process. Our approach can be executed via two distinct paths: the aluminum (Al)-facilitated spin-center shift (SCS) path and the Al-facilitated direct deoxygenation path.
View Article and Find Full Text PDFProc Natl Acad Sci U S A
January 2025
Department of Chemistry, New York University, New York, NY 10003.
Frameshifting is an essential mechanism employed by many viruses including coronaviruses to produce viral proteins from a compact RNA genome. It is facilitated by specific RNA folds in the frameshift element (FSE), which has emerged as an important therapeutic target. For SARS-CoV-2, a specific 3-stem pseudoknot has been identified to stimulate frameshifting.
View Article and Find Full Text PDFFront Sports Act Living
January 2025
Department of Psychology, Catholic University of the Sacred Heart, Milan, Italy.
Introduction: In the so-called "new career era," career transitions and employability have attracted growing attention. For elite athletes, the Dual Career experiences may be regarded as a protective factor during various career transitions, with the end-of-career transition being closely linked to employability. This contribution aims to explore the dual career paths of athletes through the lens of graduate employability, as perceived by the individuals themselves.
View Article and Find Full Text PDFGeroscience
January 2025
Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599, USA.
Cellular senescence is a phenotypic state that contributes to the progression of age-related disease through secretion of pro-inflammatory factors known as the senescence-associated secretory phenotype (SASP). Understanding the process by which healthy cells become senescent and develop SASP factors is critical for improving the identification of senescent cells and, ultimately, understanding tissue dysfunction. Here, we reveal how the duration of cellular stress modulates the SASP in distinct subpopulations of senescent cells.
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