FUNDC1 drives cholangiocarcinoma progression via RAC1 interaction and ferroptosis suppression.

International journal of biological macromolecules 2025 Vol.321(Pt 1) p. 146087

Luo X, Li M, Gong Y, Tao Y, Gong Z, Fan K, Qiu W, ChangXu, Meng Q, Wang J, Ni X, ShengShen, Liu H, Ni X, Ding Z, Abudureyimu M, Liu H

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Abstract

Cholangiocarcinoma (CCA) is a highly lethal epithelial malignancy that can arise at any site within the biliary tract. Our findings revealed that FUN14 domain-containing protein 1 (FUNDC1) expression was significantly elevated in CCA samples compared to matched peritumoral tissues. Survival analysis indicated that patients with high FUNDC1 expression had shorter overall survival. Mitochondrial membrane potential (MMP) alterations were observed. Specifically, knockdown of FUNDC1 induced MMP disruption in CCA cells. Additionally, we detected damaged mitochondria and increased production of reactive oxygen species (ROS), which were further exacerbated by FUNDC1 knockdown in CCA cells. Further analysis revealed upregulation of Gpx4 and SLC7A11, along with downregulation of NCOA4 in CCA patients. These changes were accompanied by increased glutathione (GSH) levels and decreased malondialdehyde (MDA) and C11-BODIPY levels in CCA cells, effects that were nullified by FUNDC1 knockdown in vivo. We also observed increased expression of Ras-related C3 botulinum toxin substrate 1 (RAC1), a member of the Rho GTPase family, in human CCA samples. Immunoprecipitation analysis demonstrated that an extracellular segment of FUNDC1 (amino acids 96-133) mediated its interaction with RAC1. Furthermore, while FUNDC1 knockdown effectively induces ferroptosis, RAC1 knockdown does not. Notably, this induction is abrogated upon overexpression of FUNDC1. In vivo experiments also confirmed that knockdown of FUNDC1 and RAC1 significantly reduced tumor volume. These findings suggest that RAC1 is involved in FUNDC1-induced malignant transformation in CCA. Overall, our data indicate that FUNDC1 promotes CCA progression through mitochondrial function-dependent ferroptosis, highlighting a promising target for the development of FUNDC1-based therapies for CCA.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 botulinum toxin 보툴리눔독소 주사 dict 1
해부 biliary tract scispacy 1
해부 peritumoral tissues scispacy 1
해부 Mitochondrial membrane scispacy 1
해부 CCA cells scispacy 1
해부 mitochondria scispacy 1
해부 extracellular scispacy 1
해부 mitochondrial scispacy 1
약물 glutathione C0017817
glutathione
scispacy 1
약물 GSH C0017817
glutathione
scispacy 1
약물 malondialdehyde C0024643
malondialdehyde
scispacy 1
약물 MDA → malondialdehyde C0024643
malondialdehyde
scispacy 1
약물 amino acids C0002520
Amino Acids
scispacy 1
약물 reactive oxygen species scispacy 1
약물 ROS → reactive oxygen species scispacy 1
약물 C11-BODIPY scispacy 1
약물 CCA → Cholangiocarcinoma scispacy 1
질환 cholangiocarcinoma C0206698
Cholangiocarcinoma
scispacy 1
질환 and ferroptosis suppression scispacy 1
질환 malignancy C0006826
Malignant Neoplasms
scispacy 1
질환 tumor C0027651
Neoplasms
scispacy 1
질환 malignant transformation scispacy 1
질환 lethal epithelial malignancy scispacy 1
기타 FUNDC1 → FUN14 domain-containing protein 1 scispacy 1
기타 RAC1 → Ras-related C3 botulinum toxin substrate 1 scispacy 1
기타 FUN14 domain-containing protein 1 scispacy 1
기타 patients scispacy 1
기타 MMP → membrane potential scispacy 1
기타 Gpx4 scispacy 1
기타 SLC7A11 scispacy 1
기타 NCOA4 scispacy 1
기타 Ras-related C3 botulinum toxin substrate 1 scispacy 1
기타 Rho scispacy 1
기타 human CCA scispacy 1
기타 amino acids 96-133 scispacy 1

MeSH Terms

Humans; Ferroptosis; Cholangiocarcinoma; rac1 GTP-Binding Protein; Cell Line, Tumor; Animals; Membrane Proteins; Mitochondrial Proteins; Disease Progression; Mice; Bile Duct Neoplasms; Reactive Oxygen Species; Gene Expression Regulation, Neoplastic; Female; Male; Mitochondria; Membrane Potential, Mitochondrial

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