The factory enters the fray: how mitochondrial protein trafficking shapes the host response to infection

Beyond textbook functions in homeostatic metabolism, mitochondria are now recognized as central coordinators of cell-intrinsic and cell-extrinsic immune responses to infection. Directed trafficking of proteins and other molecules between mitochondria and the rest of the cell underlies a growing catalog of these activities. Some are pro-host; others are antagonized by viral effectors or co-opted by viruses entirely. How host and viral factors rewire the mitochondrial proteome during infection to shape these outcomes remains incompletely understood. The evolutionary history of this system adds another dimension: mitochondria retain biochemical signatures of their α-proteobacterial endosymbiotic origin, and ongoing co-evolution between viral, host, and mitochondrial genomes continues to shape the proteins that traffic to and from the organelle. Using published examples, we highlight general principles, mechanisms, and consequences of host and viral protein localization to and from the mitochondria. To support discovery, we present integrated gene lists identifying host mitochondrial factors with evidence for type I interferon stimulation, interactions with viral proteins, and signatures of positive selection. Together, these resources and the principles within offer a framework for understanding mitochondria not as passive metabolic machinery but as actively contested cellular territory whose protein composition is continuously negotiated between the host and the pathogen.

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Publication Details

Journal
Journal of Virology
Published
2026-09-14
DOI
https://doi.org/10.1128/jvi.01746-25
Primary Topic
interferon and immune responses
Type
article
Field-Weighted Citation Impact
0.00

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article

The factory enters the fray: how mitochondrial protein trafficking shapes the host response to infection

Steven F. Baker, Dustin C. Hancks
Journal of Virology
interferon and immune responses
article

The factory enters the fray: how mitochondrial protein trafficking shapes the host response to infection

Steven F. Baker, Dustin C. Hancks
article en

Abstract

Beyond textbook functions in homeostatic metabolism, mitochondria are now recognized as central coordinators of cell-intrinsic and cell-extrinsic immune responses to infection. Directed trafficking of proteins and other molecules between mitochondria and the rest of the cell underlies a growing catalog of these activities. Some are pro-host; others are antagonized by viral effectors or co-opted by viruses entirely. How host and viral factors rewire the mitochondrial proteome during infection to shape these outcomes remains incompletely understood. The evolutionary history of this system adds another dimension: mitochondria retain biochemical signatures of their α-proteobacterial endosymbiotic origin, and ongoing co-evolution between viral, host, and mitochondrial genomes continues to shape the proteins that traffic to and from the organelle. Using published examples, we highlight general principles, mechanisms, and consequences of host and viral protein localization to and from the mitochondria. To support discovery, we present integrated gene lists identifying host mitochondrial factors with evidence for type I interferon stimulation, interactions with viral proteins, and signatures of positive selection. Together, these resources and the principles within offer a framework for understanding mitochondria not as passive metabolic machinery but as actively contested cellular territory whose protein composition is continuously negotiated between the host and the pathogen.

Journal of Virology
Loyola University Chicago (US), The University of Texas Southwestern Medical Center (US)
National Institute of General Medical Sciences
Openalex Percentile: Top 18%
interferon and immune responses
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The factory enters the fray: how mitochondrial protein trafficking shapes the host response to infection — Steven F. Baker, Dustin C. Hancks · Journal of Virology (2026) | TGRS Research Map | TGRS