Photochemical Control of RNA Structure by Disrupting π‑Stacking
Photolabile nucleotides that disrupt nucleic acid structure are useful mechanistic probes and can be used as tools for regulating biochemical processes. Previous probes can be limited by the need to incorporate multiple modified nucleotides into oligonucleotides and in kinetic studies by the rate-li...
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Veröffentlicht in: | Journal of the American Chemical Society 2012-08, Vol.134 (30), p.12478-12481 |
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container_title | Journal of the American Chemical Society |
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creator | Resendiz, Marino J. E Schön, Arne Freire, Ernesto Greenberg, Marc M |
description | Photolabile nucleotides that disrupt nucleic acid structure are useful mechanistic probes and can be used as tools for regulating biochemical processes. Previous probes can be limited by the need to incorporate multiple modified nucleotides into oligonucleotides and in kinetic studies by the rate-limiting step in the conversion to the native nucleotide. Photolysis of aryl sulfide 1 produces high yields of 5-methyluridine, and product formation is complete in less than a microsecond. Aryl sulfide 1 prevents RNA hairpin formation and complete folding of the preQ1 class I riboswitch. Proper folding is achieved in each instance upon photolysis at 350 nm. Aryl sulfide 1 is a novel tool for modulating RNA structure, and formation of 5-methyluridine within a radical cage suggests that it will be useful in kinetic studies. |
doi_str_mv | 10.1021/ja306304w |
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Proper folding is achieved in each instance upon photolysis at 350 nm. Aryl sulfide 1 is a novel tool for modulating RNA structure, and formation of 5-methyluridine within a radical cage suggests that it will be useful in kinetic studies.</description><subject>Base Sequence</subject><subject>Circular Dichroism</subject><subject>Models, Molecular</subject><subject>Nucleic Acid Conformation - radiation effects</subject><subject>Photolysis</subject><subject>Riboswitch - radiation effects</subject><subject>RNA - chemistry</subject><subject>Sulfides - chemistry</subject><subject>Uridine - analogs & derivatives</subject><subject>Uridine - chemistry</subject><issn>0002-7863</issn><issn>1520-5126</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2012</creationdate><recordtype>article</recordtype><sourceid>EIF</sourceid><recordid>eNptkN9KwzAYxYMobk4vfAHpjaAX1SRtkvZGmPMvDBWn1yHJ0q2zbWbSKrvbK_hkvoNPYsbmUPDq4_D9OOdwANhH8ARBjE4nIoI0gvH7BmgjgmFIEKaboA0hxCFLaNQCO85NvIxxgrZBC-MEs5jGbXD-MDa1UWNd5koUQc9UtTVFYLLg8a4bDGrbqLqxOpCz4CJ3tpnWeTUKPudf849BLdSLV7tgKxOF03ur2wHPV5dPvZuwf3992-v2QxFDUocEaixkNCSx0gqmSqJE0ZgIASPEMpGmnmIUScZSJBWjTNKEZRpjpIiUQxp1wNnSd9rIUg-V9lVFwac2L4WdcSNy_vdT5WM-Mm88ihGFhHiDo5WBNa-NdjUvc6d0UYhKm8ZxBCOYMJywRdbxElXWOGd1to5BkC825-vNPXvwu9ea_BnZA4dLQCjHJ6axlZ_pH6NvpKqKFg</recordid><startdate>20120801</startdate><enddate>20120801</enddate><creator>Resendiz, Marino J. 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Chem. Soc</addtitle><date>2012-08-01</date><risdate>2012</risdate><volume>134</volume><issue>30</issue><spage>12478</spage><epage>12481</epage><pages>12478-12481</pages><issn>0002-7863</issn><eissn>1520-5126</eissn><abstract>Photolabile nucleotides that disrupt nucleic acid structure are useful mechanistic probes and can be used as tools for regulating biochemical processes. Previous probes can be limited by the need to incorporate multiple modified nucleotides into oligonucleotides and in kinetic studies by the rate-limiting step in the conversion to the native nucleotide. Photolysis of aryl sulfide 1 produces high yields of 5-methyluridine, and product formation is complete in less than a microsecond. Aryl sulfide 1 prevents RNA hairpin formation and complete folding of the preQ1 class I riboswitch. Proper folding is achieved in each instance upon photolysis at 350 nm. Aryl sulfide 1 is a novel tool for modulating RNA structure, and formation of 5-methyluridine within a radical cage suggests that it will be useful in kinetic studies.</abstract><cop>United States</cop><pub>American Chemical Society</pub><pmid>22827464</pmid><doi>10.1021/ja306304w</doi><tpages>4</tpages><oa>free_for_read</oa></addata></record> |
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subjects | Base Sequence Circular Dichroism Models, Molecular Nucleic Acid Conformation - radiation effects Photolysis Riboswitch - radiation effects RNA - chemistry Sulfides - chemistry Uridine - analogs & derivatives Uridine - chemistry |
title | Photochemical Control of RNA Structure by Disrupting π‑Stacking |
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