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铁调节哺乳动物雷帕霉素靶蛋白复合物1(mTORC1)调控途径,并维持胰腺导管腺癌细胞的活力。

Fer governs mTORC1 regulating pathways and sustains viability of pancreatic ductal adenocarcinoma cells.

作者信息

Schrier Ilan, Slotki-Itzchakov Orel, Elkis Yoav, Most-Menachem Nofar, Adato Orit, Fitoussi-Allouche Debora, Shpungin Sally, Unger Ron, Nir Uri

机构信息

Department of Surgery, Rabin Medical Center, Petah Tikva, Israel.

Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel.

出版信息

Front Oncol. 2024 Aug 14;14:1427029. doi: 10.3389/fonc.2024.1427029. eCollection 2024.

Abstract

Pancreatic ductal adenocarcinoma (PDAC) is one of the deadliest cancers with a high percentage of morbidity. The deciphering and identification of novel targets and tools for intervening with its adverse progression are therefore of immense importance. To address this goal we adopted a specific inhibitor of the intracellular tyrosine kinase Fer, whose expression level is upregulated in PDAC tumors, and is associated with poor prognosis of patients. Subjecting PDAC cells to the E260-Fer inhibitor, unraveled its simultaneous effects on the mitochondria, and on a non-mitochondrial ERK1/2 regulatory cascade. E260 caused severe mitochondrial deformation, resulting in cellular- aspartate and ATP depletion, and followed by the activation of the metabolic sensor AMPK. This led to the phosphorylation and deactivation of the bona fide AMPK substrate, RAPTOR, which serves as a positive regulator of the mTORC1 metabolic hub. Accordingly, this resulted in the inhibition of the mTORC1 activity. In parallel, E260 downregulated the activation state of the ERK1/2 kinases, and their ability to neutralize the mTORC1 suppressor TSC2, thereby accentuating the inhibition of mTORC1. Importantly, both activation of AMPK and downregulation of ERK1/2 and mTORC1 were also achieved upon the knockdown of Fer, corroborating the regulatory role of Fer in these processes. Concomitantly, in PDAC tumors and not in healthy pancreatic tissues, the expression levels of Fer demonstrate moderate but statistically significant positive correlation with the expression levels of mTOR and its downstream effector LARP1. Finally, targeting the Fer driven activation of mTORC1, culminated in necrotic death of the treated PDAC cells, envisaging a new intervention tool for the challenging PDAC disease.

摘要

胰腺导管腺癌(PDAC)是最致命的癌症之一,发病率很高。因此,破译和鉴定用于干预其不良进展的新靶点和工具至关重要。为了实现这一目标,我们采用了细胞内酪氨酸激酶Fer的特异性抑制剂,其在PDAC肿瘤中的表达水平上调,并且与患者的不良预后相关。将PDAC细胞用E260-Fer抑制剂处理后,揭示了其对线粒体以及非线粒体ERK1/2调节级联的同时作用。E260导致严重的线粒体变形,导致细胞内天冬氨酸和ATP耗竭,随后代谢传感器AMPK激活。这导致了真正的AMPK底物RAPTOR的磷酸化和失活,RAPTOR作为mTORC1代谢枢纽的正向调节因子。因此,这导致了mTORC1活性的抑制。同时,E260下调了ERK1/2激酶的激活状态及其中和mTORC1抑制剂TSC2的能力,从而增强了对mTORC1的抑制。重要的是,在敲低Fer后也实现了AMPK的激活以及ERK1/2和mTORC1的下调,证实了Fer在这些过程中的调节作用。同时,在PDAC肿瘤而非健康胰腺组织中,Fer的表达水平与mTOR及其下游效应器LARP1的表达水平呈中度但具有统计学意义的正相关。最后,靶向Fer驱动的mTORC1激活,最终导致处理后的PDAC细胞坏死死亡,为具有挑战性的PDAC疾病设想了一种新的干预工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94db/11349523/76e3307f2123/fonc-14-1427029-g001.jpg

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