A synthesis paper restating the iterative annealing framework for chaperone action, including a model-derived prediction that moderate RNA chaperone activity maximizes in vivo splicing yield.
Molecular Chaperones Maximize the Native State Yield on Biological Times by Driving Substrates out of 18 Equilibrium
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Iterative Annealing Mechanism for Protein and RNA Chaperones
A synthesis paper restating the iterative annealing framework for chaperone action, including a model-derived prediction that moderate RNA chaperone activity maximizes in vivo splicing yield.