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Cell Death Database

Comprehensive RNA involved in Cell Death Pathways research database with advanced search and filtering capabilities

388 research entries found
RNA Name Mechanism of Action Effect on Cancer Reference
RPTOR
mRNA
Scaffold of mTORC1; activation suppresses autophagy via ULK1 inhibition. In TNBC cells, RPTOR inhibition overcame resistance to EGFR inhibition (gefitinib), reducing viability and signaling. PMID: 29344641

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Autophagy
mRNA
Breast Cancer

RNA Name: RPTOR

Mechanism of Action: Scaffold of mTORC1; activation suppresses autophagy via ULK1 inhibition.

Effect on Cancer: In TNBC cells, RPTOR inhibition overcame resistance to EGFR inhibition (gefitinib), reducing viability and signaling.

PMID: 29344641
FOXO3
mRNA
Luteolin treatments suppress SGK1, which allows FOXO3a to move into the nucleus and upregulate BNIP3; this triggers autophagy Luteolin induces autophagy in TNBC via SGK1-FOXO3a-BNIP3 signaling PMID: 37346292

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Autophagy
mRNA
Breast Cancer

RNA Name: FOXO3

Mechanism of Action: Luteolin treatments suppress SGK1, which allows FOXO3a to move into the nucleus and upregulate BNIP3; this triggers autophagy

Effect on Cancer: Luteolin induces autophagy in TNBC via SGK1-FOXO3a-BNIP3 signaling

PMID: 37346292
USP20
mRNA
Deubiquitinates and stabilizes ULK1, positively regulating autophagy initiation. USP20 promotes migration/invasion in breast cancer PMID: 32943575

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Autophagy
mRNA
Breast Cancer

RNA Name: USP20

Mechanism of Action: Deubiquitinates and stabilizes ULK1, positively regulating autophagy initiation.

Effect on Cancer: USP20 promotes migration/invasion in breast cancer

PMID: 32943575
USP20
mRNA
Deubiquitinates and stabilizes ULK1, positively regulating autophagy initiation. USP20 promotes migration/invasion in breast cancer PMID: 29487085

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Autophagy
mRNA
Breast Cancer

RNA Name: USP20

Mechanism of Action: Deubiquitinates and stabilizes ULK1, positively regulating autophagy initiation.

Effect on Cancer: USP20 promotes migration/invasion in breast cancer

PMID: 29487085
HDAC6
mRNA
Cytoplasmic deacetylase that regulates autophagosome�lysosome fusion and autophagic flux. Sulforaphane induces autophagy and suppresses TNBC cell growth via inhibition of HDAC6-mediated PTEN activation (MDA-MB-231/468). PMID: 30352240

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Autophagy
mRNA
Breast Cancer

RNA Name: HDAC6

Mechanism of Action: Cytoplasmic deacetylase that regulates autophagosome�lysosome fusion and autophagic flux.

Effect on Cancer: Sulforaphane induces autophagy and suppresses TNBC cell growth via inhibition of HDAC6-mediated PTEN activation (MDA-MB-231/468).

PMID: 30352240
DNM2
mRNA
Dynamin?2 regulates autophagosome formation/ATG9 trafficking; dynamin inhibition impairs autophagy. In TNBC derivatives (MDA?MB?231?BR3), DNM2 knockdown impairs homologous recombination and increases sensitivity to PARP inhibitors. PMID: 30371505

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Autophagy
mRNA
Breast Cancer

RNA Name: DNM2

Mechanism of Action: Dynamin?2 regulates autophagosome formation/ATG9 trafficking; dynamin inhibition impairs autophagy.

Effect on Cancer: In TNBC derivatives (MDA?MB?231?BR3), DNM2 knockdown impairs homologous recombination and increases sensitivity to PARP inhibitors.

PMID: 30371505
SLC7A5
mRNA
LAT1-mediated essential amino acid uptake activates mTORC1; LAT1 inhibition can reduce mTORC1 signaling and trigger autophagy. Overexpressed in TNBC; higher LAT1 correlates with poor prognosis and is a therapeutic target in TNBC models. PMID:

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Autophagy
mRNA
Breast Cancer

RNA Name: SLC7A5

Mechanism of Action: LAT1-mediated essential amino acid uptake activates mTORC1; LAT1 inhibition can reduce mTORC1 signaling and trigger autophagy.

Effect on Cancer: Overexpressed in TNBC; higher LAT1 correlates with poor prognosis and is a therapeutic target in TNBC models.

PMID:
HMGB1
mRNA
Upregulates autophagy via HMGB1�Beclin1 axis; miR-107 targeting HMGB1 reduces autophagy markers (LC3-II) in MDA-MB-231 cells. Promotes migration/survival; HMGB1 suppression (by miR-107) decreases autophagy and migration in MDA-MB-231 (TNBC). PMID: 30506984

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Autophagy
mRNA
Breast Cancer

RNA Name: HMGB1

Mechanism of Action: Upregulates autophagy via HMGB1�Beclin1 axis; miR-107 targeting HMGB1 reduces autophagy markers (LC3-II) in MDA-MB-231 cells.

Effect on Cancer: Promotes migration/survival; HMGB1 suppression (by miR-107) decreases autophagy and migration in MDA-MB-231 (TNBC).

PMID: 30506984
ATG9A
mRNA
Only multi-pass transmembrane ATG protein; supplies membrane for autophagosome biogenesis. ATG9A is overexpressed in TNBC; knockdown reduces autophagy, migration and colony formation, indicating a pro-tumor role. PMID: 30563263

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Autophagy
mRNA
Breast Cancer

RNA Name: ATG9A

Mechanism of Action: Only multi-pass transmembrane ATG protein; supplies membrane for autophagosome biogenesis.

Effect on Cancer: ATG9A is overexpressed in TNBC; knockdown reduces autophagy, migration and colony formation, indicating a pro-tumor role.

PMID: 30563263
LGALS8
mRNA
Galectin-8 senses damaged endomembranes and promotes selective autophagy by recruiting autophagy adaptors to ruptured vesicles. Dual knockdown of LGALS8 and its ligand ALCAM reduces tumor growth and lung metastasis in TNBC models (MDA?MB?231). PMID: 30905597

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Autophagy
mRNA
Breast Cancer

RNA Name: LGALS8

Mechanism of Action: Galectin-8 senses damaged endomembranes and promotes selective autophagy by recruiting autophagy adaptors to ruptured vesicles.

Effect on Cancer: Dual knockdown of LGALS8 and its ligand ALCAM reduces tumor growth and lung metastasis in TNBC models (MDA?MB?231).

PMID: 30905597