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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
BECN1
mRNA
Core autophagy regulator; forms complexes with class III PI3K to initiate autophagosome formation. Beclin1 regulates autophagy-mediated survival in TNBC; loss or suppression sensitizes to chemotherapy. PMID: 22733132

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Autophagy
mRNA
Breast Cancer

RNA Name: BECN1

Mechanism of Action: Core autophagy regulator; forms complexes with class III PI3K to initiate autophagosome formation.

Effect on Cancer: Beclin1 regulates autophagy-mediated survival in TNBC; loss or suppression sensitizes to chemotherapy.

PMID: 22733132
MTOR
mRNA
AMPK/mTOR pathway may involve in CSC-3436 switched tamoxifen-induced autophagy to apoptosis The combination of tamoxifen and CSC-3436 produced stronger tumor growth inhibition PMID: 27526942

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Autophagy
mRNA
Breast Cancer

RNA Name: MTOR

Mechanism of Action: AMPK/mTOR pathway may involve in CSC-3436 switched tamoxifen-induced autophagy to apoptosis

Effect on Cancer: The combination of tamoxifen and CSC-3436 produced stronger tumor growth inhibition

PMID: 27526942
USP10
mRNA
Deubiquitinase stabilizing Beclin1 and p53, promoting autophagy. USP10 promotes autophagy and chemoresistance in TNBC cells by stabilizing Beclin1. PMID: 21962518

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Autophagy
mRNA
Breast Cancer

RNA Name: USP10

Mechanism of Action: Deubiquitinase stabilizing Beclin1 and p53, promoting autophagy.

Effect on Cancer: USP10 promotes autophagy and chemoresistance in TNBC cells by stabilizing Beclin1.

PMID: 21962518
USP10
mRNA
Deubiquitinase stabilizing Beclin1 and p53, promoting autophagy. USP10 promotes autophagy and chemoresistance in TNBC cells by stabilizing Beclin1. PMID: 36248971

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Autophagy
mRNA
Breast Cancer

RNA Name: USP10

Mechanism of Action: Deubiquitinase stabilizing Beclin1 and p53, promoting autophagy.

Effect on Cancer: USP10 promotes autophagy and chemoresistance in TNBC cells by stabilizing Beclin1.

PMID: 36248971
ELAPOR1 (EVA1A)
mRNA
EVA1A positively regulates autophagy/mitophagy; flubendazole targets EVA1A to trigger excessive autophagy/mitophagy. Anti-tumor via autophagy: EVA1A-driven (flubendazole-induced) autophagy/mitophagy suppresses TNBC proliferation and migration. PMID: 32724459

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Autophagy
mRNA
Breast Cancer

RNA Name: ELAPOR1 (EVA1A)

Mechanism of Action: EVA1A positively regulates autophagy/mitophagy; flubendazole targets EVA1A to trigger excessive autophagy/mitophagy.

Effect on Cancer: Anti-tumor via autophagy: EVA1A-driven (flubendazole-induced) autophagy/mitophagy suppresses TNBC proliferation and migration.

PMID: 32724459
TMEM41B
mRNA
ER-resident lipid scramblase required for autophagosome formation; loss blocks autophagosome biogenesis. Inhibition of microRNA-660-5p decreases breast cancer progression through direct targeting of TMEM41B PMID: 39709500

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Autophagy
mRNA
Breast Cancer

RNA Name: TMEM41B

Mechanism of Action: ER-resident lipid scramblase required for autophagosome formation; loss blocks autophagosome biogenesis.

Effect on Cancer: Inhibition of microRNA-660-5p decreases breast cancer progression through direct targeting of TMEM41B

PMID: 39709500
TMEM41B
mRNA
ER-resident lipid scramblase required for autophagosome formation; loss blocks autophagosome biogenesis. Inhibition of microRNA-660-5p decreases breast cancer progression through direct targeting of TMEM41B PMID: 36931971

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Autophagy
mRNA
Breast Cancer

RNA Name: TMEM41B

Mechanism of Action: ER-resident lipid scramblase required for autophagosome formation; loss blocks autophagosome biogenesis.

Effect on Cancer: Inhibition of microRNA-660-5p decreases breast cancer progression through direct targeting of TMEM41B

PMID: 36931971
ATG2B
mRNA
In TNBC cancer stem cells (CSCs), autophagy is suppressed via upregulation of miR-181a, which directly targets ATG5 and ATG2B, reducing their expression and dampening autophagy Same study shows miR?181a suppresses ATG2B to inhibit autophagy and TNBC stemness/tumorigenicity. PMID: 35029026

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Autophagy
mRNA
Breast Cancer

RNA Name: ATG2B

Mechanism of Action: In TNBC cancer stem cells (CSCs), autophagy is suppressed via upregulation of miR-181a, which directly targets ATG5 and ATG2B, reducing their expression and dampening autophagy

Effect on Cancer: Same study shows miR?181a suppresses ATG2B to inhibit autophagy and TNBC stemness/tumorigenicity.

PMID: 35029026
CASP3
mRNA
Promote cytoprotective autophagy under non-lethal stresses like starvation or proteasome inhibition. Caspase-3�mediated cleavage of autophagy proteins linked to TNBC apoptosis�autophagy balance and treatment responses. PMID: 39982959

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Autophagy
mRNA
Breast Cancer

RNA Name: CASP3

Mechanism of Action: Promote cytoprotective autophagy under non-lethal stresses like starvation or proteasome inhibition.

Effect on Cancer: Caspase-3�mediated cleavage of autophagy proteins linked to TNBC apoptosis�autophagy balance and treatment responses.

PMID: 39982959
SNAP29
mRNA
SNARE protein that mediates autophagosome�lysosome fusion. SNAP29 is essential for autophagic flux in TNBC; silencing impairs autophagy and suppresses tumor cell survival. PMID: 35256275

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Autophagy
mRNA
Breast Cancer

RNA Name: SNAP29

Mechanism of Action: SNARE protein that mediates autophagosome�lysosome fusion.

Effect on Cancer: SNAP29 is essential for autophagic flux in TNBC; silencing impairs autophagy and suppresses tumor cell survival.

PMID: 35256275