The phospholipid transporter PITPNC1 links KRAS to MYC to prevent autophagy in lung and pancreatic cancer

克拉斯 生物 癌症研究 自噬 癌变 胰腺癌 效应器 PI3K/AKT/mTOR通路 癌症 PTEN公司 细胞生物学 信号转导 细胞凋亡 生物化学 遗传学 结直肠癌
作者
Rodrigo Entrialgo‐Cadierno,Cristina Cueto‐Ureña,Connor Welch,Iker Feliu,Irati Macaya,Laura Vera,Xabier Morales,Sandra Vietti Michelina,Pietro Scaparone,Inés López,Élodie Darbo,Oihane Erice,Adrián Vallejo,Haritz Moreno,Ainhoa Goñi‐Salaverri,David Lara‐Astiaso,Nils Halberg,Iván Cortés‐Domínguez,Elizabeth Guruceaga,Chiara Ambrogio
出处
期刊:Molecular Cancer [BioMed Central]
卷期号:22 (1): 86-86 被引量:21
标识
DOI:10.1186/s12943-023-01788-w
摘要

Abstract Background The discovery of functionally relevant KRAS effectors in lung and pancreatic ductal adenocarcinoma (LUAD and PDAC) may yield novel molecular targets or mechanisms amenable to inhibition strategies. Phospholipids availability has been appreciated as a mechanism to modulate KRAS oncogenic potential. Thus, phospholipid transporters may play a functional role in KRAS-driven oncogenesis. Here, we identified and systematically studied the phospholipid transporter PITPNC1 and its controlled network in LUAD and PDAC. Methods Genetic modulation of KRAS expression as well as pharmacological inhibition of canonical effectors was completed. PITPNC1 genetic depletion was performed in in vitro and in vivo LUAD and PDAC models. PITPNC1 -deficient cells were RNA sequenced, and Gene Ontology and enrichment analyses were applied to the output data. Protein-based biochemical and subcellular localization assays were run to investigate PITPNC1-regulated pathways. A drug repurposing approach was used to predict surrogate PITPNC1 inhibitors that were tested in combination with KRASG12C inhibitors in 2D, 3D, and in vivo models. Results PITPNC1 was increased in human LUAD and PDAC, and associated with poor patients’ survival. PITPNC1 was regulated by KRAS through MEK1/2 and JNK1/2. Functional experiments showed PITPNC1 requirement for cell proliferation, cell cycle progression and tumour growth. Furthermore, PITPNC1 overexpression enhanced lung colonization and liver metastasis. PITPNC1 regulated a transcriptional signature which highly overlapped with that of KRAS, and controlled mTOR localization via enhanced MYC protein stability to prevent autophagy. JAK2 inhibitors were predicted as putative PITPNC1 inhibitors with antiproliferative effect and their combination with KRASG12C inhibitors elicited a substantial anti-tumour effect in LUAD and PDAC. Conclusions Our data highlight the functional and clinical relevance of PITPNC1 in LUAD and PDAC. Moreover, PITPNC1 constitutes a new mechanism linking KRAS to MYC, and controls a druggable transcriptional network for combinatorial treatments. Graphical Abstract
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