The hidden rule in argonaute protein loading : sequence specificity

Argonaute (AGO) proteins play an important role in gene regulation with small RNAs serving as guides to targets. The small RNA duplex structure and 5’ terminal nucleotide are the only known determinants of AGO loading efficacy, and AGOs are believed to load small RNAs independently of their sequence...

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Bibliographic Details
Main Author: Goh, Eling
Other Authors: Katsutomo Okamura
Format: Thesis
Language:English
Published: 2018
Subjects:
Online Access:http://hdl.handle.net/10356/73227
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author Goh, Eling
author2 Katsutomo Okamura
author_facet Katsutomo Okamura
Goh, Eling
author_sort Goh, Eling
collection NTU
description Argonaute (AGO) proteins play an important role in gene regulation with small RNAs serving as guides to targets. The small RNA duplex structure and 5’ terminal nucleotide are the only known determinants of AGO loading efficacy, and AGOs are believed to load small RNAs independently of their sequences. Challenging this notion, we developed HIgh-throughput Sequencing mediated Specificity Analysis (HISSA), a method that allows massively parallel analysis of AGO loading by using randomized single-stranded oligos in in-vitro loading assays and quantifying AGO-loaded RNA sequences with deep-sequencing. Intriguingly, HISSA divulged sequence specificity as the hidden rule governing fly AGO1 loading when 5’ Guanine-Adenine-Cytosine (GAC) motif was strongly preferred over the classic 5’ Uridine (U). Trends of ‘GAC’ motif enrichment in the 5’ ends of AGO1-loaded messenger RNA (mRNA) fragments are in line with our HISSA results. Our findings together with HISSA may have implications in therapeutic single-stranded RNAi designs.
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spelling ntu-10356/732272023-02-28T18:46:17Z The hidden rule in argonaute protein loading : sequence specificity Goh, Eling Katsutomo Okamura School of Biological Sciences Temasek Laboratories DRNTU::Science::Biological sciences::Genetics Argonaute (AGO) proteins play an important role in gene regulation with small RNAs serving as guides to targets. The small RNA duplex structure and 5’ terminal nucleotide are the only known determinants of AGO loading efficacy, and AGOs are believed to load small RNAs independently of their sequences. Challenging this notion, we developed HIgh-throughput Sequencing mediated Specificity Analysis (HISSA), a method that allows massively parallel analysis of AGO loading by using randomized single-stranded oligos in in-vitro loading assays and quantifying AGO-loaded RNA sequences with deep-sequencing. Intriguingly, HISSA divulged sequence specificity as the hidden rule governing fly AGO1 loading when 5’ Guanine-Adenine-Cytosine (GAC) motif was strongly preferred over the classic 5’ Uridine (U). Trends of ‘GAC’ motif enrichment in the 5’ ends of AGO1-loaded messenger RNA (mRNA) fragments are in line with our HISSA results. Our findings together with HISSA may have implications in therapeutic single-stranded RNAi designs. ​Doctor of Philosophy (SBS) 2018-01-26T01:11:33Z 2018-01-26T01:11:33Z 2018 Thesis Goh, E. (2018). The hidden rule in argonaute protein loading : sequence specificity. Doctoral thesis, Nanyang Technological University, Singapore. http://hdl.handle.net/10356/73227 10.32657/10356/73227 en 122 p. application/pdf
spellingShingle DRNTU::Science::Biological sciences::Genetics
Goh, Eling
The hidden rule in argonaute protein loading : sequence specificity
title The hidden rule in argonaute protein loading : sequence specificity
title_full The hidden rule in argonaute protein loading : sequence specificity
title_fullStr The hidden rule in argonaute protein loading : sequence specificity
title_full_unstemmed The hidden rule in argonaute protein loading : sequence specificity
title_short The hidden rule in argonaute protein loading : sequence specificity
title_sort hidden rule in argonaute protein loading sequence specificity
topic DRNTU::Science::Biological sciences::Genetics
url http://hdl.handle.net/10356/73227
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