Fatty Acid Synthase Mutations Predict Favorable Immune Checkpoint Inhibitor Outcome and Response in Melanoma and Non-Small Cell Lung Cancer Patients

Author:

Wang QinghuaORCID,Tian Na,Zhang Wenjing,Lin Zhijuan,Shi Fuyan,Kong Yujia,Ren Yanfeng,Lyu Juncheng,Qin Hao,Liu Hongqing

Abstract

Fatty acid synthase (FASN) acts as the central member in fatty acid synthesis and metabolism processes, which regulate oncogenic signals and tumor immunogenicity. To date, no studies have reported the connection of FASN mutations with ICI efficacy. In this study, from 631 melanoma and 109 NSCLC patients who received ICI treatments, we retrospectively curated multiomics profiles and ICI treatment data. We also explored the potential molecular biological mechanisms behind FASN alterations. In melanoma patients, FASN mutations were observed to associate with a preferable immunotherapeutic prognosis and response rate (both p < 0.01). These connections were further corroborated by the NSCLC patients (both p < 0.01). Further analyses showed that a favorable tumor immunogenicity and immune microenvironment were involved in FASN mutations. This work confirms the clinical immunotherapy implications of FASN mutation-mediated fatty acid metabolism and provides a possible indicator for immunotherapy prognosis prediction.

Funder

Medicine and Health Science and Technology Development Plan Project of Shandong Province

Publisher

MDPI AG

Subject

Cancer Research,Oncology

Reference57 articles.

1. The multifaceted roles of fatty acid synthesis in cancer;Nat. Rev. Cancer,2016

2. Reprogramming of fatty acid metabolism in cancer;Br. J. Cancer,2020

3. Hierarchical clustering of activated proteins in the PI3K and MAPK pathways in ER-positive, HER2-negative breast cancer with potential therapeutic consequences;Br. J. Cancer,2018

4. Fine-tuning the lipogenic/lipolytic balance to optimize the metabolic requirements of cancer cell growth: Molecular mechanisms and therapeutic perspectives;Biochim. Biophys. Acta (BBA)-Mol. Cell Biol. Lipids,2010

5. Inhibition of fatty acid synthase (FAS) suppresses HER2/neu (erbB-2) oncogene overexpression in cancer cells;Proc. Natl. Acad. Sci. USA,2004

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