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CSSR: assignment of secondary structure to coarse-grained RNA tertiary structures.


ABSTRACT: RNA secondary-structure (rSS) assignment is one of the most routine forms of analysis of RNA 3D structures. However, traditional rSS assignment programs require full-atomic structures of the individual RNA nucleotides. This prevents their application to the modeling of RNA structures in which base atoms are missing. To address this issue, Coarse-grained Secondary Structure of RNA (CSSR), an algorithm for the assignment of rSS for structures in which nucleobase atomic positions are incomplete, has been developed. Using CSSR, an rSS assignment accuracy of ∼90% is achieved even for RNA structures in which only one backbone atom per nucleotide is known. Thus, CSSR will be useful for the analysis of experimentally determined and computationally predicted RNA 3D structures alike. The source code of CSSR is available at https://github.com/pylelab/CSSR.

SUBMITTER: Zhang C 

PROVIDER: S-EPMC8972804 | biostudies-literature | 2022 Apr

REPOSITORIES: biostudies-literature

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CSSR: assignment of secondary structure to coarse-grained RNA tertiary structures.

Zhang Chengxin C   Pyle Anna Marie AM  

Acta crystallographica. Section D, Structural biology 20220311 Pt 4


RNA secondary-structure (rSS) assignment is one of the most routine forms of analysis of RNA 3D structures. However, traditional rSS assignment programs require full-atomic structures of the individual RNA nucleotides. This prevents their application to the modeling of RNA structures in which base atoms are missing. To address this issue, Coarse-grained Secondary Structure of RNA (CSSR), an algorithm for the assignment of rSS for structures in which nucleobase atomic positions are incomplete, ha  ...[more]

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