ADPGK‐AS1 long noncoding RNA switches macrophage metabolic and phenotypic state to promote lung cancer growth

Author:

Karger Annika12,Mansouri Siavash12ORCID,Leisegang Matthias S3ORCID,Weigert Andreas45ORCID,Günther Stefan1ORCID,Kuenne Carsten1ORCID,Wittig Ilka6ORCID,Zukunft Sven7ORCID,Klatt Stephan7,Aliraj Blerina4,Klotz Laura V89,Winter Hauke89,Mahavadi Poornima10ORCID,Fleming Ingrid7ORCID,Ruppert Clemens10ORCID,Witte Biruta11,Alkoudmani Ibrahim11,Gattenlöhner Stefan12,Grimminger Friedrich210,Seeger Werner1210ORCID,Pullamsetti Soni Savai1210ORCID,Savai Rajkumar12510ORCID

Affiliation:

1. Max Planck Institute for Heart and Lung Research Member of the German Center for Lung Research (DZL), Member of the Cardio‐Pulmonary Institute (CPI) Bad Nauheim Germany

2. Institute for Lung Health (ILH) Justus Liebig University Giessen Germany

3. Institute for Cardiovascular Physiology, Medical Faculty Goethe University Frankfurt Frankfurt Germany

4. Institute of Biochemistry I, Faculty of Medicine Goethe University Frankfurt Frankfurt Germany

5. Frankfurt Cancer Institute (FCI) Goethe University Frankfurt Frankfurt Germany

6. Functional Proteomics, Medical School Goethe University Frankfurt Frankfurt Germany

7. Institute for Vascular Signalling, Centre for Molecular Medicine Goethe University Frankfurt Germany

8. Translational Lung Research Center (TLRC), Member of the DZL Heidelberg Germany

9. Department of Thoracic Surgery Thoraxklinik at the University Hospital Heidelberg Heidelberg Germany

10. Department of Internal Medicine Member of the DZL, Member of CPI, Justus Liebig University Giessen Germany

11. Department of General and Thoracic Surgery University Hospital Giessen Giessen Germany

12. Department of Pathology Justus Liebig University Giessen Germany

Abstract

AbstractLong noncoding RNAs (lncRNAs) influence the transcription of gene networks in many cell types, but their role in tumor‐associated macrophages (TAMs) is still largely unknown. We found that the lncRNA ADPGK‐AS1 was substantially upregulated in artificially induced M2‐like human macrophages, macrophages exposed to lung cancer cells in vitro, and TAMs from human lung cancer tissue. ADPGK‐AS1 is partly located within mitochondria and binds to the mitochondrial ribosomal protein MRPL35. Overexpression of ADPGK‐AS1 in macrophages upregulates the tricarboxylic acid cycle and promotes mitochondrial fission, suggesting a phenotypic switch toward an M2‐like, tumor‐promoting cytokine release profile. Macrophage‐specific knockdown of ADPGK‐AS1 induces a metabolic and phenotypic switch (as judged by cytokine profile and production of reactive oxygen species) to a pro‐inflammatory tumor‐suppressive M1‐like state, inhibiting lung tumor growth in vitro in tumor cell‐macrophage cocultures, ex vivo in human tumor precision‐cut lung slices, and in vivo in mice. Silencing ADPGK‐AS1 in TAMs may thus offer a novel therapeutic strategy for lung cancer.

Publisher

Springer Science and Business Media LLC

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,Molecular Biology,General Neuroscience

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