The Lysosomal Calcium Channel TRPML1 Maintains Mitochondrial Fitness in NK Cells through Interorganelle Cross-Talk

Author:

Clement Dennis12,Szabo Edina K.1ORCID,Krokeide Silje Zandstra1ORCID,Wiiger Merete Thune2,Vincenti Marianna12ORCID,Palacios Daniel12ORCID,Chang Young-Tae3ORCID,Grimm Christian4,Patel Sandip5,Stenmark Harald6,Brech Andreas6,Majhi Rakesh Kumar127,Malmberg Karl-Johan128ORCID

Affiliation:

1. *Precision Immunotherapy Alliance, Institute for Cancer Research, University of Oslo, Norway

2. †Department of Cancer Immunology, Institute for Cancer Research, Oslo University Hospital, Oslo, Norway

3. ‡Department of Chemistry, Pohang University of Science and Technology, Pohang, Republic of Korea

4. §Department of Pharmacology and Toxicology, Faculty of Medicine, University of Munich, Munich, Germany

5. ¶Department of Cell and Developmental Biology, University College London, London, United Kingdom

6. ‖Department of Molecular Cell Biology, Institute for Cancer Research, Oslo University Hospital, Montebello, Oslo, Norway

7. #Tissue Restoration Lab, Department of Biological Sciences and Bioengineering, Mehta Family Center of Engineering and Medicine, Indian Institute of Technology Kanpur, Kanpur, India

8. **Center for Infectious Medicine, Department of Medicine Huddinge, Karolinska Institute, Stockholm, Sweden

Abstract

Abstract Cytotoxic lymphocytes eliminate cancer cells through the release of lytic granules, a specialized form of secretory lysosomes. This compartment is part of the pleomorphic endolysosomal system and is distinguished by its highly dynamic Ca2+ signaling machinery. Several transient receptor potential (TRP) calcium channels play essential roles in endolysosomal Ca2+ signaling and ensure the proper function of these organelles. In this study, we examined the role of TRPML1 (TRP cation channel, mucolipin subfamily, member 1) in regulating the homeostasis of secretory lysosomes and their cross-talk with mitochondria in human NK cells. We found that genetic deletion of TRPML1, which localizes to lysosomes in NK cells, led to mitochondrial fragmentation with evidence of collapsed mitochondrial cristae. Consequently, TRPML1−/− NK92 (NK92ML1−/−) displayed loss of mitochondrial membrane potential, increased reactive oxygen species stress, reduced ATP production, and compromised respiratory capacity. Using sensitive organelle-specific probes, we observed that mitochondria in NK92ML1−/− cells exhibited evidence of Ca2+ overload. Moreover, pharmacological activation of the TRPML1 channel in primary NK cells resulted in upregulation of LC3-II, whereas genetic deletion impeded autophagic flux and increased accumulation of dysfunctional mitochondria. Thus, TRPML1 impacts autophagy and clearance of damaged mitochondria. Taken together, these results suggest that an intimate interorganelle communication in NK cells is orchestrated by the lysosomal Ca2+ channel TRPML1.

Publisher

The American Association of Immunologists

Subject

Immunology,Immunology and Allergy

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