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SHAPER: A Web Server for Fast and Accurate SHAPE Reactivity Prediction.


ABSTRACT: Selective 2'-hydroxyl acylation analyzed by primer extension (SHAPE) chemical probing serves as a convenient and efficient experiment technique for providing information about RNA local flexibility. The local structural information contained in SHAPE reactivity data can be used as constraints in 2D/3D structure predictions. Here, we present SHAPE predictoR (SHAPER), a web server for fast and accurate SHAPE reactivity prediction. The main purpose of the SHAPER web server is to provide a portal that uses experimental SHAPE data to refine 2D/3D RNA structure selection. Input structures for the SHAPER server can be obtained through experimental or computational modeling. The SHAPER server can accept RNA structures with single or multiple conformations, and the predicted SHAPE profile and correlation with experimental SHAPE data (if provided) for each conformation can be freely downloaded through the web portal. The SHAPER web server is available at http://rna.physics.missouri.edu/shaper/.

SUBMITTER: Zhou Y 

PROVIDER: S-EPMC8355595 | biostudies-literature | 2021

REPOSITORIES: biostudies-literature

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SHAPER: A Web Server for Fast and Accurate SHAPE Reactivity Prediction.

Zhou Yuanzhe Y   Li Jun J   Hurst Travis T   Chen Shi-Jie SJ  

Frontiers in molecular biosciences 20210728


Selective 2'-hydroxyl acylation analyzed by primer extension (SHAPE) chemical probing serves as a convenient and efficient experiment technique for providing information about RNA local flexibility. The local structural information contained in SHAPE reactivity data can be used as constraints in 2D/3D structure predictions. Here, we present SHAPE predictoR (SHAPER), a web server for fast and accurate SHAPE reactivity prediction. The main purpose of the SHAPER web server is to provide a portal th  ...[more]

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