Interaction Between Argonaute2 and RNA Molecules: AGO2 Molecular Structure and Different Regions in Nucleotide Chain

Argonaute2 (AGO2) is an important protein connecting the construction of RNA-induced silencing complex (RISC) and micro-RNA (miRNA) biogenesis. This paper explores the mechanism during the function through previous studies which reveal the crystal structure and affinity comparisons. It is concluded...

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Main Author: Chen Chen
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:BIO Web of Conferences
Online Access:https://www.bio-conferences.org/articles/bioconf/pdf/2023/04/bioconf_icbb2023_01001.pdf
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author Chen Chen
author_facet Chen Chen
author_sort Chen Chen
collection DOAJ
description Argonaute2 (AGO2) is an important protein connecting the construction of RNA-induced silencing complex (RISC) and micro-RNA (miRNA) biogenesis. This paper explores the mechanism during the function through previous studies which reveal the crystal structure and affinity comparisons. It is concluded that the AGO2 have compartmentalized domains for certain functions, which have both individual and cooperative role in the entire process. The characters of AGO2 and miRNA suggest a model of regiondifferent nucleotide chains in miRNA, which means its epigenetic information is based on base sequence and its special information. According to these findings, further studies are advised to monitor the reactions in a dynamical method, which would be a new potential entry point for clinical utilization.
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spelling doaj.art-e3dde5f61a88451d8edeab10ef9a87132023-05-11T09:08:11ZengEDP SciencesBIO Web of Conferences2117-44582023-01-01590100110.1051/bioconf/20235901001bioconf_icbb2023_01001Interaction Between Argonaute2 and RNA Molecules: AGO2 Molecular Structure and Different Regions in Nucleotide ChainChen Chen0UNIVERSITY NOTTINGHAM MALAYSIAArgonaute2 (AGO2) is an important protein connecting the construction of RNA-induced silencing complex (RISC) and micro-RNA (miRNA) biogenesis. This paper explores the mechanism during the function through previous studies which reveal the crystal structure and affinity comparisons. It is concluded that the AGO2 have compartmentalized domains for certain functions, which have both individual and cooperative role in the entire process. The characters of AGO2 and miRNA suggest a model of regiondifferent nucleotide chains in miRNA, which means its epigenetic information is based on base sequence and its special information. According to these findings, further studies are advised to monitor the reactions in a dynamical method, which would be a new potential entry point for clinical utilization.https://www.bio-conferences.org/articles/bioconf/pdf/2023/04/bioconf_icbb2023_01001.pdf
spellingShingle Chen Chen
Interaction Between Argonaute2 and RNA Molecules: AGO2 Molecular Structure and Different Regions in Nucleotide Chain
BIO Web of Conferences
title Interaction Between Argonaute2 and RNA Molecules: AGO2 Molecular Structure and Different Regions in Nucleotide Chain
title_full Interaction Between Argonaute2 and RNA Molecules: AGO2 Molecular Structure and Different Regions in Nucleotide Chain
title_fullStr Interaction Between Argonaute2 and RNA Molecules: AGO2 Molecular Structure and Different Regions in Nucleotide Chain
title_full_unstemmed Interaction Between Argonaute2 and RNA Molecules: AGO2 Molecular Structure and Different Regions in Nucleotide Chain
title_short Interaction Between Argonaute2 and RNA Molecules: AGO2 Molecular Structure and Different Regions in Nucleotide Chain
title_sort interaction between argonaute2 and rna molecules ago2 molecular structure and different regions in nucleotide chain
url https://www.bio-conferences.org/articles/bioconf/pdf/2023/04/bioconf_icbb2023_01001.pdf
work_keys_str_mv AT chenchen interactionbetweenargonaute2andrnamoleculesago2molecularstructureanddifferentregionsinnucleotidechain