Interleukin-6 Facilitates Acute Myeloid Leukemia Chemoresistance via Mitofusin 1–Mediated Mitochondrial Fusion

Author:

Hou Diyu1ORCID,Zheng Xiaoming1ORCID,Cai Danni1ORCID,You Ruolan1ORCID,Liu Jingru1ORCID,Wang Xiaoting1ORCID,Liao Xinai1ORCID,Tan Maoqing1ORCID,Lin Liyan1ORCID,Wang Jin1ORCID,Zhang Shuxia2ORCID,Huang Huifang1ORCID

Affiliation:

1. 1Central Laboratory, Fujian Medical University Union Hospital, Fuzhou, China.

2. 2Fujian Institute of Hematology, Fujian Provincial Key Laboratory on Hematology, Fujian Medical University Union Hospital, Fuzhou, China.

Abstract

Abstract Acute myeloid leukemia (AML), an aggressive hematopoietic malignancy, exhibits poor prognosis and a high recurrence rate largely because of primary and secondary drug resistance. Elevated serum IL6 levels have been observed in patients with AML and are associated with chemoresistance. Chemoresistant AML cells are highly dependent on oxidative phosphorylation (OXPHOS), and mitochondrial network remodeling is essential for mitochondrial function. However, IL6-mediated regulation of mitochondrial remodeling and its effectiveness as a therapeutic target remain unclear. We aimed to determine the mechanisms through which IL6 facilitates the development of chemoresistance in AML cells. IL6 upregulated mitofusin 1 (MFN1)-mediated mitochondrial fusion, promoted OXPHOS, and induced chemoresistance in AML cells. MFN1 knockdown impaired the effects of IL6 on mitochondrial function and chemoresistance in AML cells. In an MLL::AF9 fusion gene-induced AML mouse model, IL6 reduced chemosensitivity to cytarabine (Ara-C), a commonly used antileukemia drug, accompanied by increased MFN1 expression, mitochondrial fusion, and OXPHOS status. In contrast, anti-IL6 antibodies downregulated MFN1 expression, suppressed mitochondrial fusion and OXPHOS, enhanced the curative effects of Ara-C, and prolonged overall survival. In conclusion, IL6 upregulated MFN1-mediated mitochondrial fusion in AML, which facilitated mitochondrial respiration, in turn, inducing chemoresistance. Thus, targeting IL6 may have therapeutic implications in overcoming IL6-mediated chemoresistance in AML. Implications: IL6 treatment induces MFN1-mediated mitochondrial fusion, promotes OXPHOS, and confers chemoresistance in AML cells. Targeting IL6 regulation in mitochondria is a promising therapeutic strategy to enhance the chemosensitivity of AML.

Funder

National Natural Science Foundation of China

Science and Technology Projects of Fujian Province

Natural Science Foundation of Fujian Province

High-level Hospital Construction Project of Guangdong Provincial People's Hospital

National Key Clinical Specialty Discipline Construction Program of China

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology,Molecular Biology

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