F. nucleatum targets lncRNA ENO1-IT1 to promote glycolysis and oncogenesis in colorectal cancer

Author:

Hong JieORCID,Guo Fangfang,Lu Shi-YuanORCID,Shen Chaoqin,Ma Dan,Zhang Xinyu,Xie Yile,Yan Tingting,Yu TaChung,Sun Tiantian,Qian Yun,Zhong Ming,Chen Jinxian,Peng Yanshen,Wang Cheng,Zhou Xiang,Liu Jianjun,Liu Qiang,Ma XiongORCID,Chen Ying-Xuan,Chen HaoyanORCID,Fang Jing-YuanORCID

Abstract

ObjectiveMicrobiota disorder promotes chronic inflammation and carcinogenesis. High glycolysis is associated with poor prognosis in patients with colorectal cancer (CRC). However, the potential correlation between the gut microbiota and glucose metabolism is unknown in CRC.Design18F-FDG (18F-fluorodeoxyglucose) PET (positron emission tomography)/CT image scanning data and microbiota PCR analysis were performed to measure the correlation between metabolic alterations and microbiota disorder in 33 patients with CRC. Multiple colorectal cancer models, metabolic analysis and Seahorse assay were established to assess the role of long non-coding RNA (lncRNA) enolase1-intronic transcript 1 (ENO1-IT1) in Fusobacterium (F.) nucleatum-induced glucose metabolism and colorectal carcinogenesis. RNA immunoprecipitation and chromatin immunoprecipitation sequencing were conducted to identify potential targets of lncRNA ENO1-IT1.ResultsWe have found F. nucleatum abundance correlated with high glucose metabolism in patients with CRC. Furthermore, F. nucleatum supported carcinogenesis via increasing CRC cell glucose metabolism. Mechanistically, F. nucleatum activated lncRNA ENO1-IT1 transcription via upregulating the binding efficiency of transcription factor SP1 to the promoter region of lncRNA ENO1-IT1. Elevated ENO1-IT behaved as a guider modular for KAT7 histone acetyltransferase, specifying the histone modification pattern on its target genes, including ENO1, and consequently altering CRC biological function.ConclusionF. nucleatum and glucose metabolism are mechanistically, biologically and clinically connected to CRC. Targeting ENO1 pathway may be meaningful in treating patients with CRC with elevated F. nucleatum.

Funder

Program of Shanghai Young Academic/Technology Research Leader

Shanghai Education Development Foundation

National Natural Science Foundation of China

key research and development projects of the Ministry of Science and Technology

Shanghai Municipal Education Commission

Shanghai Municipal Health Commission,Collaborative Innovation Cluster Project

Program for Professor of Special Appointment

Publisher

BMJ

Subject

Gastroenterology

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