Interleukin-6 Drives Mitochondrial Dysregulation and Accelerates Physical Decline: Insights From an Inducible Humanized IL-6 Knock-In Mouse Model

Author:

Nidadavolu Lolita S1ORCID,Cosarderelioglu Caglar1ORCID,Merino Gomez Alessandra1,Wu Yuqiong1,Bopp Taylor2,Zhang Cissy3,Nguyen Tu3,Marx-Rattner Ruth1,Yang Huanle1,Antonescu Corina4,Florea Liliana4ORCID,Talbot Conover C5,Smith Barbara6,Foster D Brian7,Fairman Jennifer E8,Yenokyan Gayane9ORCID,Chung Tae210,Le Anne3,Walston Jeremy D1,Abadir Peter M1

Affiliation:

1. Division of Geriatrics and Gerontology, Johns Hopkins University School of Medicine , Baltimore, Maryland , USA

2. Department of Physical Medicine and Rehabilitation, Johns Hopkins University School of Medicine , Baltimore, Maryland , USA

3. Department of Pathology, Johns Hopkins University School of Medicine , Baltimore, Maryland , USA

4. Department of Genetic Medicine, John Hopkins University School of Medicine , Baltimore, Maryland , USA

5. Institute for Basic Biomedical Sciences, Johns Hopkins University School of Medicine , Baltimore, Maryland , USA

6. Department of Cell Biology, Imaging Facility, Johns Hopkins University School of Medicine , Baltimore, Maryland , USA

7. Division of Cardiology, Department of Medicine, Johns Hopkins University , Baltimore, Maryland , USA

8. Division of Cellular and Molecular Medicine, Department of Art as Applied to Medicine, Johns Hopkins University School of Medicine , Baltimore, Maryland , USA

9. Johns Hopkins Biostatistics Center, Johns Hopkins Bloomberg School of Public Health , Baltimore, Maryland , USA

10. Department of Neurology, Johns Hopkins University School of Medicine , Baltimore, Maryland , USA

Abstract

Abstract Chronic activation of inflammatory pathways (CI) and mitochondrial dysfunction are independently linked to age-related functional decline and early mortality. Interleukin 6 (IL-6) is among the most consistently elevated chronic activation of inflammatory pathways markers, but whether IL-6 plays a causative role in this mitochondrial dysfunction and physical deterioration remains unclear. To characterize the role of IL-6 in age-related mitochondrial dysregulation and physical decline, we have developed an inducible human IL-6 (hIL-6) knock-in mouse (TetO-hIL-6mitoQC) that also contains a mitochondrial-quality control reporter. Six weeks of hIL-6 induction resulted in upregulation of proinflammatory markers, cell proliferation and metabolic pathways, and dysregulated energy utilization. Decreased grip strength, increased falls off the treadmill, and increased frailty index were also observed. Further characterization of skeletal muscles postinduction revealed an increase in mitophagy, downregulation of mitochondrial biogenesis genes, and an overall decrease in total mitochondrial numbers. This study highlights the contribution of IL-6 to mitochondrial dysregulation and supports a causal role of hIL-6 in physical decline and frailty.

Funder

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Geriatrics and Gerontology,Aging

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