Mfold web server for nucleic acid folding and hybridization prediction

Веб‑сервер Mfold для прогнозирования сворачивания и гибридизации нуклеиновых кислот
Michael Zuker
2003-06-24

DNA foldingRNA foldingfolding and hybridization softwaremfold web servernucleic acid secondary structure prediction
The abbreviated name, 'mfold web server', describes a number of closely related software applications available on the World Wide Web (WWW) for the prediction of the secondary structure of single stranded nucleic acids. The objective of this web server is to provide easy access to RNA and DNA folding and hybridization software to the scientific community at large. By making use of universally available web GUIs (Graphical User Interfaces), the server circumvents the problem of portability of this software. Detailed output, in the form of structure plots with or without reliability information, single strand frequency plots and 'energy dot plots', are available for the folding of single sequences. A variety of 'bulk' servers give less information, but in a shorter time and for up to hundreds of sequences at once. The portal for the mfold web server is http://www.bioinfo.rpi.edu/applications/mfold. This URL will be referred to as 'MFOLDROOT'.
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Bulk server options process up to hundreds of sequences faster, offering less detailed but higher-throughput results.
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Detailed outputs include structure plots (with optional reliability information), single-strand frequency plots, and energy dot plots for single-sequence folding.
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The mfold web server is available at the portal URL http://www.bioinfo.rpi.edu/applications/mfold (referred to as MFOLDROOT).
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The mfold web server provides WWW-accessible software for predicting secondary structure of single-stranded RNA and DNA.
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Web GUIs make the server portable and easy for the broad scientific community to access folding and hybridization tools.

mfold web server for nucleic acid (RNA and DNA) folding and hybridization prediction

Prediction and output of secondary structure, folding and hybridization of single‑stranded nucleic acids (RNA and DNA), including structure plots, reliability information, single‑strand frequency plots, and energy dot plots; plus bulk processing capabilities

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2003-06-24
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Michael Zuker
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