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Evidence of an Unusual Poly(A) RNA Signature Detected by High-throughput Chemical Mapping

View ORCID ProfileRoger Wellington-Oguri, View ORCID ProfileEli Fisker, Mat Zada, View ORCID ProfileMichelle Wiley, Eterna Players
doi: https://doi.org/10.1101/281147
Roger Wellington-Oguri
Eterna Massive Open Laboratory.
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  • For correspondence: omei@stanford.edu
Eli Fisker
1Stanford Department of Biochemistry, B400 Beckman Center, 279 Campus Drive, Stanford, CA 94305
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Mat Zada
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Michelle Wiley
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ABSTRACT

Homopolymeric adenosine RNA plays numerous roles in both cells and non-cellular genetic material, and for lack of evidence to the contrary, it is generally accepted to form a random coil under physiological conditions. However, chemical mapping data generated by the Eterna Massive Open Laboratory indicates that a poly (A) sequence of length seven or more, at pH 8.0 and MgCl concentrations of 10 mM, develops unexpected protection to selective 2’-hydroxyl acylation read out by primer extension (SHAPE) and dimethyl sulfate (DMS) chemical probing. This protection first appears in poly(A) sequences of length 7 and grows to its maximum strength at length ~10. In a long poly(A) sequence, substitution of a single A by any other nucleotide disrupts the protection, but only for the 6 or so nucleotides on the 5’ side of the substitution. The authors are grateful for pre-publication comments; please use https://docs.google.com/document/d/14972Q36IDTYMglwMXTOrqd4P9orQ6-P3bPbCuITdv6A.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted May 14, 2018.
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Evidence of an Unusual Poly(A) RNA Signature Detected by High-throughput Chemical Mapping
Roger Wellington-Oguri, Eli Fisker, Mat Zada, Michelle Wiley, Eterna Players
bioRxiv 281147; doi: https://doi.org/10.1101/281147
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Evidence of an Unusual Poly(A) RNA Signature Detected by High-throughput Chemical Mapping
Roger Wellington-Oguri, Eli Fisker, Mat Zada, Michelle Wiley, Eterna Players
bioRxiv 281147; doi: https://doi.org/10.1101/281147

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