نتایج جستجو برای: folding intermediates

تعداد نتایج: 50312  

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2007
Pan T X Li Carlos Bustamante Ignacio Tinoco

The rugged folding-energy landscapes of RNAs often display many competing minima. How do RNAs discriminate among competing conformations in their search for the native state? By using optical tweezers, we show that the folding-energy landscape can be manipulated to control the fate of an RNA: individual RNA molecules can be induced into either native or misfolding pathways by modulating the rel...

2017
H M Mazhar Asjad Shahrooz Nasrollahi-Shirazi Sonja Sucic Michael Freissmuth Christian Nanoff

Many diseases arise from mutations, which impair protein folding. The study of folding-deficient variants of G protein-coupled receptors and solute carrier 6 (SLC6) transporters has shed light on the folding trajectory, how it is monitored and how misfolding can be remedied. Reducing the temperature lowers the energy barrier between folding intermediates and thereby eliminates stalling along th...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2012
Dmitry M Korzhnev Tomasz L Religa Lewis E Kay

Studies of protein folding and the intermediates that are formed along the folding pathway provide valuable insights into the process by which an unfolded ensemble forms a functional native conformation. However, because intermediates on folding pathways can serve as initiation points of aggregation (implicated in a number of diseases), their characterization assumes an even greater importance....

Journal: :Biophysical journal 2007
Brijesh Patel John M Finke

Kinetic simulations of the folding and unfolding of triosephosphate isomerase (TIM) from yeast were conducted using a single monomer gammaTIM polypeptide chain that folds as a monomer and two gammaTIM chains that fold to the native dimer structure. The basic protein model used was a minimalist Gō model using the native structure to determine attractive energies in the protein chain. For each si...

Journal: :The Journal of Cell Biology 1997
Guoling Tian Sally A. Lewis Becket Feierbach Timothy Stearns Heidi Rommelaere Christophe Ampe Nicholas J. Cowan

The production of native alpha/beta tubulin heterodimer in vitro depends on the action of cytosolic chaperonin and several protein cofactors. We previously showed that four such cofactors (termed A, C, D, and E) together with native tubulin act on beta-tubulin folding intermediates generated by the chaperonin to produce polymerizable tubulin heterodimers. However, this set of cofactors generate...

Journal: :Journal of molecular biology 2006
B Robert Simler Yaakov Levy José N Onuchic C Robert Matthews

Enhanced structural insights into the folding energy landscape of the N-terminal dimerization domain of Escherichia coli tryptophan repressor, [2-66]2 TR, were obtained from a combined experimental and theoretical analysis of its equilibrium folding reaction. Previous studies have shown that the three intertwined helices in [2-66]2 TR are sufficient to drive the formation of a stable dimer for ...

Journal: :Biochemical and biophysical research communications 2003
Yawen Bai

It has long been suggested that existence of partially folded intermediates may be essential for proteins to fold in a biologically meaningful time scale. Although partially folded intermediates have been commonly observed in larger proteins, they are generally not detectable in the kinetic folding of smaller proteins (approximately 100 amino acids or less). Recent native-state hydrogen exchang...

2008
Gregory R. Bowman Xuhui Huang Yuan Yao Jian Sun Gunnar Carlsson Leonidas J. Guibas Vijay S. Pande

Hairpins are a ubiquitous secondary structure motif in RNA molecules. Despite their simple structure, there is some debate over whether they fold in a two-state or multi-state manner. We have studied the folding of a small tetraloop hairpin using a serial version of replica exchange molecular dynamics on a distributed computing environment. On the basis of these simulations, we have identified ...

Journal: :Current opinion in structural biology 2004
José Nelson Onuchic Peter G Wolynes

Protein folding should be complex. Proteins organize themselves into specific three-dimensional structures, through a myriad of conformational changes. The classical view of protein folding describes this process as a nearly sequential series of discrete intermediates. In contrast, the energy landscape theory of folding considers folding as the progressive organization of an ensemble of partial...

2014
Jörg C. Schlatterer Joshua S. Martin Alain Laederach Michael Brenowitz

The folding of linear polymers into discrete three-dimensional structures is often required for biological function. The formation of long-lived intermediates is a hallmark of the folding of large RNA molecules due to the ruggedness of their energy landscapes. The precise thermodynamic nature of the barriers (whether enthalpic or entropic) that leads to intermediate formation is still poorly ch...

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