Comprehensive RNA involved in Cell Death Pathways research database with advanced search and filtering capabilities
| RNA Name | Mechanism of Action | Effect on Cancer | Reference |
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KCNQ1OT1
lncRNA |
KCNQ1OT1 epigenetically inhibits ferroptosis. It recruits the methyltransferase MLL4 to the TRABD promoter, increasing H3K4 methylation and TRABD expression. Inhibition of KCNQ1OT1 (e.g. by ZC3H13-mediated m6A) restores ferroptosis. | KCNQ1OT1 drives chemoresistance and growth in TNBC. Its activation of the TRABD axis promotes doxorubicin resistance; silencing KCNQ1OT1 (by ZC3H13) suppresses proliferation and induces ferroptosis in TNBC. | PMID: 40000487 |
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RNA Name:
KCNQ1OT1
Mechanism of Action:
KCNQ1OT1 epigenetically inhibits ferroptosis. It recruits the methyltransferase MLL4 to the TRABD promoter, increasing H3K4 methylation and TRABD expression. Inhibition of KCNQ1OT1 (e.g. by ZC3H13-mediated m6A) restores ferroptosis.
Effect on Cancer:
KCNQ1OT1 drives chemoresistance and growth in TNBC. Its activation of the TRABD axis promotes doxorubicin resistance; silencing KCNQ1OT1 (by ZC3H13) suppresses proliferation and induces ferroptosis in TNBC.
PMID:
40000487
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miR-153
miRNA |
Reduces cell ferroptosis via circ_0000643/miR-153/SLC7A11 axis | Inhibits ferroptosis and promotes progression | PMID: 37591453 |
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RNA Name:
miR-153
Mechanism of Action:
Reduces cell ferroptosis via circ_0000643/miR-153/SLC7A11 axis
Effect on Cancer:
Inhibits ferroptosis and promotes progression
PMID:
37591453
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miR-335-5p
miRNA |
Regulates GPX4 via Sp1 transcription factor | Induces ferroptosis and inhibits progression | PMID: 38866351 |
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RNA Name:
miR-335-5p
Mechanism of Action:
Regulates GPX4 via Sp1 transcription factor
Effect on Cancer:
Induces ferroptosis and inhibits progression
PMID:
38866351
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miR-128-3p
miRNA |
Targets CD98hc, induces ferroptosis | Promotes ferroptosis and reduces tumor burden | PMID: 38734268 |
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RNA Name:
miR-128-3p
Mechanism of Action:
Targets CD98hc, induces ferroptosis
Effect on Cancer:
Promotes ferroptosis and reduces tumor burden
PMID:
38734268
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miR-376c-3p
miRNA |
Targets SLC7A11 to regulate ferroptosis | Inhibits ferroptosis and supports tumor growth | PMID: 38318853 |
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RNA Name:
miR-376c-3p
Mechanism of Action:
Targets SLC7A11 to regulate ferroptosis
Effect on Cancer:
Inhibits ferroptosis and supports tumor growth
PMID:
38318853
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miR-5096
miRNA |
Targets SLC7A11 and induces ferroptotic cell death | Induces ferroptosis and reduces invasion | PMID: 34571083 |
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RNA Name:
miR-5096
Mechanism of Action:
Targets SLC7A11 and induces ferroptotic cell death
Effect on Cancer:
Induces ferroptosis and reduces invasion
PMID:
34571083
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miR-324-3p
miRNA |
Targets GPX4 to induce ferroptosis | Promotes ferroptosis and inhibits proliferation | PMID: 33522578 |
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RNA Name:
miR-324-3p
Mechanism of Action:
Targets GPX4 to induce ferroptosis
Effect on Cancer:
Promotes ferroptosis and inhibits proliferation
PMID:
33522578
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miR-106a-5p
miRNA |
Regulates STAT3 to inhibit ferroptosis | Supports progression by attenuating ferroptosis | PMID: 33686957 |
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RNA Name:
miR-106a-5p
Mechanism of Action:
Regulates STAT3 to inhibit ferroptosis
Effect on Cancer:
Supports progression by attenuating ferroptosis
PMID:
33686957
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miR-382-5p
miRNA |
Down regulate the expression of SLC7A11 | Block lidocaine induced ferroptosis | PMID: 34122108 |
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RNA Name:
miR-382-5p
Mechanism of Action:
Down regulate the expression of SLC7A11
Effect on Cancer:
Block lidocaine induced ferroptosis
PMID:
34122108
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miR-133a
miRNA |
Decreased levels of ferritin light chain (FTL) protein | Increases sensitivity for doxorubicin and cisplatin induced ferroptosis | PMID: 23969999 |
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RNA Name:
miR-133a
Mechanism of Action:
Decreased levels of ferritin light chain (FTL) protein
Effect on Cancer:
Increases sensitivity for doxorubicin and cisplatin induced ferroptosis
PMID:
23969999
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