<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
<STUDY_SET>
    <STUDY alias="DRP004742" center_name="CHIBA_U" accession="DRP004742">
        <IDENTIFIERS>
            <PRIMARY_ID label="BioProject ID">PRJDB3407</PRIMARY_ID>
        </IDENTIFIERS>
        <DESCRIPTOR>
            <STUDY_TITLE>Development of gene set for Rb inactivation signature in spherogenesis</STUDY_TITLE>
            <STUDY_TYPE existing_study_type="Other"/>
            <STUDY_ABSTRACT>We found that Rb inactivation induces sphere-forming activity in primary soft tissue sarcoma cells derived from p53 null mice. To elucidate molecular mechanism, we employed RNA-sequence as a discovery platform to identify Rb inactivation signature in spherogenesis. We hypothesized that upregulated genes subtracted in Non-sensitive cells (No spherogenesis by Rb depletion) from in Sensitive cells (Spherogenesis by Rb depletion) contribute to induction of sphere-formation , and a 53-gene signature upregulated by Rb depletion specifically in sensitive clones was identified. This gene set was highly enriched in genes involved in inflammation. These data revealed that activation of inflammatory signaling contribute to  Rb-depletion induced sphere formation.</STUDY_ABSTRACT>
            <CENTER_PROJECT_NAME>Development of gene set for Rb inactivation signature in spherogenesis</CENTER_PROJECT_NAME>
            <RELATED_STUDIES>
                <RELATED_STUDY>
                    <RELATED_LINK>
                        <DB>bioproject</DB>
                        <ID>PRJDB3407</ID>
                        <LABEL>PRJDB3407</LABEL>
                    </RELATED_LINK>
                    <IS_PRIMARY>true</IS_PRIMARY>
                </RELATED_STUDY>
            </RELATED_STUDIES>
            <STUDY_DESCRIPTION>We found that Rb inactivation induces sphere-forming activity in primary soft tissue sarcoma cells derived from p53 null mice. To elucidate molecular mechanism, we employed RNA-sequence as a discovery platform to identify Rb inactivation signature in spherogenesis. We hypothesized that upregulated genes subtracted in Non-sensitive cells (No spherogenesis by Rb depletion) from in Sensitive cells (Spherogenesis by Rb depletion) contribute to induction of sphere-formation , and a 53-gene signature upregulated by Rb depletion specifically in sensitive clones was identified. This gene set was highly enriched in genes involved in inflammation. These data revealed that activation of inflammatory signaling contribute to  Rb-depletion induced sphere formation.</STUDY_DESCRIPTION>
        </DESCRIPTOR>
    </STUDY>
</STUDY_SET>
