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Published on: February 2, 2019
Myotis bat STING attenuates aging-related inflammation in female mice
Xi Wang1,2,3, Jing-Kun Jia1,2,3, Qi Wang1,2,3
1Wuhan Institute of Virology, Chinese Academy of Sciences, Wuhan, Hubei 430071, China.
Abstract:
Bats, notable as the only flying mammals, serve as natural reservoir hosts for various highly pathogenic viruses in humans (e.g., SARS-CoV and Ebola virus). Furthermore, bats exhibit an unparalleled longevity among mammals relative to their size, particularly the Myotis bats, which can live up to 40 years. However, the mechanisms underlying these distinctive traits remain incompletely understood. In our prior research, we demonstrated that bats exhibit dampened STING-interferon activation, potentially conferring upon them the capacity to mitigate virus- or aging-induced inflammation. To substantiate this hypothesis, we established the first in vivo bat-mouse model for aging studies by integrating Myotis davidii bat STING ( MdSTING) into the mouse genome. We monitored the genotypes of these mice and performed a longitudinal comparative transcriptomic analysis on MdSTING and wild-type mice over a 3-year aging process. Blood transcriptomic analysis indicated a reduction in aging-related inflammation in female MdSTING mice, as evidenced by significantly lower levels of pro-inflammatory cytokines and chemokines, immunopathology, and neutrophil recruitment in aged female MdSTING mice compared to aged wild-type mice in vivo. These results indicated that MdSTING knock-in attenuates the aging-related inflammatory response and may also improve the healthspan in mice in a sex-dependent manner. Although the underlying mechanism awaits further study, this research has critical implications for bat longevity research, potentially contributing to our comprehension of healthy aging in humans.
Insights
Bats possess unique immune traits, like dampened STING-interferon activation, potentially explaining their longevity and virus resistance. Introducing bat STING into mice reduced aging inflammation, suggesting a role in healthy aging.
Area of Science:
- Comparative immunology
- Mammalian aging research
- Genomics and transcriptomics
Background:
- Bats are natural reservoirs for human viruses and exhibit exceptional longevity.
- Mechanisms behind bat virus resistance and longevity are not fully understood.
- Bats show dampened STING-interferon activation, potentially mitigating inflammation.
Purpose of the Study:
- To investigate the role of bat STING in aging and inflammation.
- To establish a bat-mouse model for aging research.
- To explore potential implications for human healthy aging.
Main Methods:
- Created a mouse model with integrated Myotis davidii bat STING (MdSTING).
- Conducted longitudinal comparative transcriptomic analysis over 3 years.
- Analyzed blood transcriptomics for aging-related inflammation markers.
Main Results:
- Aged female MdSTING mice showed reduced aging-related inflammation.
- Lower levels of pro-inflammatory cytokines and chemokines were observed.
- Reduced immunopathology and neutrophil recruitment in aged female MdSTING mice.
Conclusions:
- MdSTING knock-in attenuates aging-related inflammation in a sex-dependent manner.
- Bat STING may improve healthspan in mice.
- Findings have implications for bat longevity and human healthy aging research.
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