<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<STUDY_SET>
    <STUDY alias="DRP006779" center_name="UT-GALS" accession="DRP006779">
        <IDENTIFIERS>
            <PRIMARY_ID label="BioProject ID">PRJDB5927</PRIMARY_ID>
        </IDENTIFIERS>
        <DESCRIPTOR>
            <STUDY_TITLE>strand specific RNA sequence of BmAgo2 or Siwi depleted BmN4 cells</STUDY_TITLE>
            <STUDY_TYPE existing_study_type="Other"/>
            <STUDY_ABSTRACT>To determine which small RNA pathway mainly contributes to silencing of BmMLV RNA during persistent infection, we utilized the CRISPR/Cas9 system to generate Ago2 or Siwi knockout (KO) BmN-4 cells. We confirmed that 58% and 50% of the alleles contained the loss-of-function mutations in Ago2 and Siwi KO cells, respectively.
Strand-specific RNA-seq revealed that BmMLV RNA-derived reads had a very strong sense-strand bias, and few were mapped to the antisense strand.</STUDY_ABSTRACT>
            <CENTER_PROJECT_NAME>strand specific RNA sequence of BmAgo2 or Siwi depleted BmN4 cells</CENTER_PROJECT_NAME>
            <RELATED_STUDIES>
                <RELATED_STUDY>
                    <RELATED_LINK>
                        <DB>bioproject</DB>
                        <ID>PRJDB5927</ID>
                        <LABEL>PRJDB5927</LABEL>
                    </RELATED_LINK>
                    <IS_PRIMARY>true</IS_PRIMARY>
                </RELATED_STUDY>
            </RELATED_STUDIES>
            <STUDY_DESCRIPTION>To determine which small RNA pathway mainly contributes to silencing of BmMLV RNA during persistent infection, we utilized the CRISPR/Cas9 system to generate Ago2 or Siwi knockout (KO) BmN-4 cells. We confirmed that 58% and 50% of the alleles contained the loss-of-function mutations in Ago2 and Siwi KO cells, respectively.
Strand-specific RNA-seq revealed that BmMLV RNA-derived reads had a very strong sense-strand bias, and few were mapped to the antisense strand.</STUDY_DESCRIPTION>
        </DESCRIPTOR>
    </STUDY>
</STUDY_SET>
