Acidic extracellular pH drives accumulation of N1-acetylspermidine and recruitment of protumor neutrophils

Author:

Kato Miki1ORCID,Maeda Keisuke1,Nakahara Ryuichi12,Hirose Haruka34,Kondo Ayano5,Aki Sho12,Sugaya Maki1,Hibino Sana6ORCID,Nishida Miyuki1,Hasegawa Manami1,Morita Hinano7ORCID,Ando Ritsuko1,Tsuchida Rika1,Yoshida Minoru8ORCID,Kodama Tatsuhiko1,Yanai Hideyuki6ORCID,Shimamura Teppei94,Osawa Tsuyoshi12ORCID

Affiliation:

1. Division of Nutriomics and Oncology, RCAST, The University of Tokyo , Tokyo 153-8904 , Japan

2. Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo , Tokyo 113-0033 , Japan

3. Department of Systems Biology, Graduate School of Medicine, Nagoya University , Nagoya 466-8550 , Japan xs

4. Department of Computational and Systems Biology, Medical Research Institute, Tokyo Medical and Dental University , Tokyo 113-8510 , Japan

5. Research Unit, R&D Division, Kyowa Kirin Co., Ltd. , Tokyo 100-0004 , Japan

6. Department of Inflammology, RCAST, The University of Tokyo , Tokyo 153-8904 , Japan

7. College of Natural Sciences, University of Texas at Austin , Austion, TX 78712 , USA

8. Chemical Genomics Research Group, RIKEN Center for Sustainable Resource Science , Saitama 351-0198 , Japan

9. Department of Systems Biology, Graduate School of Medicine, Nagoya University , Nagoya 466-8550 , Japan

Abstract

Abstract An acidic tumor microenvironment plays a critical role in tumor progression. However, understanding of metabolic reprogramming of tumors in response to acidic extracellular pH has remained elusive. Using comprehensive metabolomic analyses, we demonstrated that acidic extracellular pH (pH 6.8) leads to the accumulation of N1-acetylspermidine, a protumor metabolite, through up-regulation of the expression of spermidine/spermine acetyltransferase 1 (SAT1). Inhibition of SAT1 expression suppressed the accumulation of intra- and extracellular N1-acetylspermidine at acidic pH. Conversely, overexpression of SAT1 increased intra- and extracellular N1-acetylspermidine levels, supporting the proposal that SAT1 is responsible for accumulation of N1-acetylspermidine. While inhibition of SAT1 expression only had a minor effect on cancer cell growth in vitro, SAT1 knockdown significantly decreased tumor growth in vivo, supporting a contribution of the SAT1-N1-acetylspermidine axis to protumor immunity. Immune cell profiling revealed that inhibition of SAT1 expression decreased neutrophil recruitment to the tumor, resulting in impaired angiogenesis and tumor growth. We showed that antineutrophil-neutralizing antibodies suppressed growth in control tumors to a similar extent to that seen in SAT1 knockdown tumors in vivo. Further, a SAT1 signature was found to be correlated with poor patient prognosis. Our findings demonstrate that extracellular acidity stimulates recruitment of protumor neutrophils via the SAT1-N1-acetylspermidine axis, which may represent a metabolic target for antitumor immune therapy.

Funder

Grant-in-Aid for Scientific Research

Grant-in-Aid for Scientific Research on Innovative Areas

Grant-in-Aid for challenging Exploratory Research

JSPS KAKENHI Grant AdAMS

Grant-in-Aid for JSPS Fellows

Leadership Development Program for PhD

University of Tokyo

Extramural Collaborative Research Grant of Cancer Research Institute

Kanazawa University and Nanken-Kyoten

Publisher

Oxford University Press (OUP)

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