mTORC2 Drives ZFX-mediated Ganglioside Biosynthesis to Promote Breast Cancer Progression.
Rajput, K.; Ansari, M. N.; Jha, S. K.; Sharma, P.; Datta, S.; Medatwal, N.; Kar, A.; Pani, T.; Cholke, K.; Khan, A.; Mukherjee, G.; Deo, S.; Prabhu, J. S.; Mukhopadhyay, A.; Bajaj, A.; Dasgupta, U.
Show abstract
Sphingolipid and ganglioside metabolic pathways are crucial components of cell signalling, having established roles in tumor cell proliferation, invasion, and migration. However, regulatory mechanisms controlling sphingolipid and ganglioside biosynthesis in mammalian cells is less known. Here, we show that RICTOR, the regulatory subunit of mTORC2, regulates the synthesis of sphingolipids and gangliosides in luminal breast cancer-specific MCF-7 and BT-474 cells through transcriptional and epigenetic mechanisms. RICTOR regulates glucosylceramide levels by modulating the expression of UDP-Glucose Ceramide Glucosyl transferase (UGCG). We identify Zinc Finger protein X-linked (ZFX) as a RICTOR-responsive transcription factor whose recruitment to the UGCG promoter is regulated by DNA methyltransferases and histone demethylase (KDM5A) that are known AKT substrates. We further demonstrate that RICTOR regulates the synthesis of GD3 gangliosides through ZFX and UGCG, and triggers the activation of EGFR signalling pathway, thereby promoting tumor growth. In line with our findings in cell culture and mice models, we observe an elevated expression of RICTOR, ZFX, and UGCG in Indian luminal breast cancer tissues, and in TCGA and METABRIC datasets. Together, we establish a key regulatory circuit, RICTOR-AKT-ZFX-UGCG-Ganglioside-EGFR-AKT, and elucidate its contribution to breast cancer progression.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Suppression of membranous LRP5 recycling, WNT/β-catenin signaling, and colorectal tumorigenesis by 15-LOX-1 peroxidation of PI3P_linoleic acid 94%
- Targeting KRAS-mutant stomach/colorectal tumours by disrupting the ERK2-p53 complex 94%
- A Cancer-Specific Antigen Drives Histone Acetylation by Stabilizing the Acetyltransferases 94%
Similar papers in this journal
- Targeting SLC7A11-mediated cysteine metabolism for the treatment of trastuzumab resistant HER2 positive breast cancer 95%
- Combinatorial CRISPR screen reveals FYN and KDM4 as targets for synergistic drug combination for treating triple negative breast cancer 95%
- Chemotherapy resistance due to epithelial-to-mesenchymal transition is caused by abnormal lipid metabolic balance 95%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- TERT accelerates BRAF mutant-induced thyroid cancer dedifferentiation and progression by regulating ribosome biogenesis 94%
- CRISPR/Cas9 screen reveals a role of purine synthesis for estrogen receptor α activity and tamoxifen resistance of breast cancer cells 93%
- The extracellular matrix drives guanylate production and protects pancreatic cancer cells from oxaliplatin-induced DNA damage. 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.