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SELEX and SHAPE reveal that sequence motifs and an extended hairpin in the 5’ portion of Turnip crinkle virus satellite RNA C mediate fitness in plants

Noncoding RNAs use their sequence and/or structure to mediate function(s). The 5’ portion (166 nt) of the 356-nt noncoding satellite RNA C (satC) of Turnip crinkle virus (TCV) was previously modeled to contain a central region with two stem-loops (H6 and H7) and a large connecting hairpin (H2). We n...

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Published in:Virology (New York, N.Y.) N.Y.), 2018-07, Vol.520, p.137-152
Main Authors: Bayne, Charlie F., Widawski, Max E., Gao, Feng, Masab, Mohammed H., Chattopadhyay, Maitreyi, Murawski, Allison M., Sansevere, Robert M., Lerner, Bryan D., Castillo, Rinaldys J., Griesman, Trevor, Fu, Jiantao, Hibben, Jennifer K., Garcia-Perez, Alma D., Simon, Anne E., Kushner, David B.
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cited_by cdi_FETCH-LOGICAL-c459t-50b9c0eb05a2f3c3ef6deae51fe24d619c3cbcd4ebb87153412c16481c4bee8f3
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container_start_page 137
container_title Virology (New York, N.Y.)
container_volume 520
creator Bayne, Charlie F.
Widawski, Max E.
Gao, Feng
Masab, Mohammed H.
Chattopadhyay, Maitreyi
Murawski, Allison M.
Sansevere, Robert M.
Lerner, Bryan D.
Castillo, Rinaldys J.
Griesman, Trevor
Fu, Jiantao
Hibben, Jennifer K.
Garcia-Perez, Alma D.
Simon, Anne E.
Kushner, David B.
description Noncoding RNAs use their sequence and/or structure to mediate function(s). The 5’ portion (166 nt) of the 356-nt noncoding satellite RNA C (satC) of Turnip crinkle virus (TCV) was previously modeled to contain a central region with two stem-loops (H6 and H7) and a large connecting hairpin (H2). We now report that in vivo functional selection (SELEX) experiments assessing sequence/structure requirements in H2, H6, and H7 reveal that H6 loop sequence motifs were recovered at nonrandom rates and only some residues are proposed to base-pair with accessible complementary sequences within the 5’ central region. In vitro SHAPE of SELEX winners indicates that the central region is heavily base-paired, such that along with the lower stem and H2 region, one extensive hairpin exists composing the entire 5’ region. As these SELEX winners are highly fit, these characteristics facilitate satRNA amplification in association with TCV in plants. •In vivo SELEX was used to find sequence-structure requirements within a subviral RNA.•In vitro SHAPE of SELEX winners shows the satC 5’ central region can be highly zipped.•Some WT sequence motifs were evolved, but RNA structure is more critical for fitness.
doi_str_mv 10.1016/j.virol.2018.05.010
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1096-0341
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source ScienceDirect Freedom Collection
subjects Carmovirus - genetics
Evolution, Molecular
Nucleic Acid Conformation
Plants - virology
RNA evolution
RNA structure
RNA, Satellite - chemistry
RNA, Satellite - genetics
RNA, Viral - chemistry
RNA, Viral - genetics
Satellite RNA
SELEX
SELEX Aptamer Technique
Turnip crinkle virus
Virus Replication
title SELEX and SHAPE reveal that sequence motifs and an extended hairpin in the 5’ portion of Turnip crinkle virus satellite RNA C mediate fitness in plants
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