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Consistent global structures of complex RNA states through multidimensional chemical mapping.

Clarence Yu Cheng | Fang-Chieh Chou | Wipapat Kladwang | Siqi Tian | Pablo Cordero | Rhiju Das
eLife | 2015

Accelerating discoveries of non-coding RNA (ncRNA) in myriad biological processes pose major challenges to structural and functional analysis. Despite progress in secondary structure modeling, high-throughput methods have generally failed to determine ncRNA tertiary structures, even at the 1-nm resolution that enables visualization of how helices and functional motifs are positioned in three dimensions. We report that integrating a new method called MOHCA-seq (Multiplexed •OH Cleavage Analysis with paired-end sequencing) with mutate-and-map secondary structure inference guides Rosetta 3D modeling to consistent 1-nm accuracy for intricately folded ncRNAs with lengths up to 188 nucleotides, including a blind RNA-puzzle challenge, the lariat-capping ribozyme. This multidimensional chemical mapping (MCM) pipeline resolves unexpected tertiary proximities for cyclic-di-GMP, glycine, and adenosylcobalamin riboswitch aptamers without their ligands and a loose structure for the recently discovered human HoxA9D internal ribosome entry site regulon. MCM offers a sequencing-based route to uncovering ncRNA 3D structure, applicable to functionally important but potentially heterogeneous states.

Pubmed ID: 26035425

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Associated grants

  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM102519
  • Agency: NIGMS NIH HHS, United States
    Id: T32 GM007276
  • Agency: NIGMS NIH HHS, United States
    Id: 5 T32 GM007276
  • Agency: Howard Hughes Medical Institute, United States

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Illumina MiSeq System (tool)

RRID:SCR_016379

MiSeq System offers wide range of sequencing applications. Capable of automated paired end reads and up to 15 Gb per run, delivering over 600 bases of sequence data per read. The library prep kits are optimized for variety of applications, including targeted gene, small genome, and amplicon sequencing, 16S metagenomics.

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