Precise small-molecule recognition of a toxic CUG RNA repeat expansion
Dimeric bis -benzimidazole compounds that bind selectively to toxic expanded r(CUG) RNA repeat sequences were identified and used as a scaffold for covalent modification, site-specific cleavage and on-target assembly of imaging reagents at expanded r(CUG) sequences in cells. Excluding the ribosome a...
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Veröffentlicht in: | Nature chemical biology 2017-02, Vol.13 (2), p.188-193 |
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Sprache: | eng |
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Zusammenfassung: | Dimeric
bis
-benzimidazole compounds that bind selectively to toxic expanded r(CUG) RNA repeat sequences were identified and used as a scaffold for covalent modification, site-specific cleavage and on-target assembly of imaging reagents at expanded r(CUG) sequences in cells.
Excluding the ribosome and riboswitches, developing small molecules that selectively target RNA is a longstanding problem in chemical biology. A typical cellular RNA is difficult to target because it has little tertiary, but abundant secondary structure. We designed allele-selective compounds that target such an RNA, the toxic noncoding repeat expansion (r(CUG)
exp
) that causes myotonic dystrophy type 1 (DM1). We developed several strategies to generate allele-selective small molecules, including non-covalent binding, covalent binding, cleavage and on-site probe synthesis. Covalent binding and cleavage enabled target profiling in cells derived from individuals with DM1, showing precise recognition of r(CUG)
exp
. In the on-site probe synthesis approach, small molecules bound adjacent sites in r(CUG)
exp
and reacted to afford picomolar inhibitors via a proximity-based click reaction only in DM1-affected cells. We expanded this approach to image r(CUG)
exp
in its natural context. |
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ISSN: | 1552-4450 1552-4469 |
DOI: | 10.1038/nchembio.2251 |