Biophysics of RNA Folding.pdf

Biophysics of RNA Folding

This volume, written by experts in the field, discusses the current understanding of the biophysical principles that govern RNA folding, with featured RNAs including the ribosomal RNAs, viral RNAs, and self-splicing introns. In addition to the fundamental features of RNA folding, the central experimental and computational approaches in the field are presented with an emphasis on their individual strengths and limitations, and how they can be combined to be more powerful than any method alone

This volume, written by experts in the field, discusses the current understanding of the biophysical principles that govern RNA folding, with featured RNAs including the ribosomal RNAs, viral RNAs, and self-splicing introns. Buy Biophysics of RNA Folding (Biophysics for …

7.91 MB DATEIGRÖSSE
1461449545 ISBN
Englisch SPRACHE
Biophysics of RNA Folding.pdf

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Sofia Voigt

Following RNA Folding From Local and Global … Brenowitz M., Pollack L. (2013) Following RNA Folding From Local and Global Perspectives. In: Russell R. (eds) Biophysics of RNA Folding. Biophysics for the Life Sciences, vol 3. Springer, New York, NY

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Matteo Müller

Nucleic acid structure prediction is a computational method to determine secondary and tertiary nucleic acid structure from its sequence. Secondary structure can be predicted from one or several nucleic acid sequences. Tertiary structure can be predicted from the sequence, or by comparative modeling (when the structure of a homologous sequence is known).

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Noel Schulze

Folding RNA: a confluence of biology, … You are here: Home

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Jason Lehmann

Biophysics of RNA Folding (Biophysics for the Life Sciences Book 3) eBook: Rick Russell: Amazon.ca: Kindle Store. Skip to main content. Try Prime EN Hello, Sign in Account & Lists Sign in Account & Lists Orders Try Prime Cart. Kindle Store. Go

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Jessica Kohmann

RNA and DNA properties. RNAs are flexible molecules and their flexibility can be tuned by the internal structures, sequences, and solvent conditions [1]. Knowledge of how conformations of simple RNA constructs respond to different ionic strengths can be generalized to complex functional RNA molecules and their folding energy landscape [2].