DNMT1-mediated SPINT2 expression drives early senescence by suppressing c-Met signaling in human fibroblasts
Min Seok Sim1,2, Hae-Ok Byun1,3, Seongki Min1,2
1Department of Biochemistry and Molecular Biology, Ajou University School of Medicine, Suwon 16499, Korea.
Abstract:
Cellular senescence is a critical process involved in aging and related disorders, yet the molecular triggers of early senescence remain elusive. Here, we identify DNA methyltransferase 1 (DNMT1) downregulation as a key trigger of early senescence and establish serine protease inhibitor Kunitz type 2 (SPINT2) as its critical downstream effector. Using replicative and oxidative stress-induced senescence models of primary human diploid fibroblast, we observed persistent upregulation of SPINT2 and inverse downregulation of DNMT1, preceding senescence-associated β-galactosidase activity, a conventional senescence marker. Pharmacological inhibition and siRNA-mediated knockdown of DNMT1 significantly increased SPINT2 expression and induced senescence, showing mitigated effects by SPINT2 knockdown. Furthermore, SPINT2 overexpression alone induced senescence. Methylation-specific sequencing identified four CpG sites in SPINT2 promoter, that became hypomethylated at early transition of senescence and upon DNMT1 suppression. Functional analyses revealed that DNMT1-mediated SPINT2 expression induced c-Met inhibition, triggering senescence. Transcriptomic profiling identified 17 commonly deregulated c-Met signaling genes in both senescence models, with COL27A1, STAM2, and CBL validated as key downstream targets of SPINT2/c-Met signaling. These findings establish DNMT1-mediated SPINT2 upregulation as a novel epigenetic mechanism driving senescence initiation via c-Met inhibition, providing insights into the early stage of senescence and potential therapeutic targets for aging-related diseases.
Insights
DNA methyltransferase 1 (DNMT1) downregulation triggers early cellular senescence by increasing serine protease inhibitor Kunitz type 2 (SPINT2) expression, offering new insights into aging and related diseases.
Area of Science:
- Epigenetics
- Cellular Biology
- Aging Research
Background:
- Cellular senescence is crucial in aging and disease, but its early triggers are unknown.
- Understanding senescence initiation is vital for addressing age-related disorders.
Purpose of the Study:
- Identify molecular triggers of early cellular senescence.
- Investigate the role of DNA methyltransferase 1 (DNMT1) and serine protease inhibitor Kunitz type 2 (SPINT2) in senescence.
- Elucidate the epigenetic mechanisms driving senescence initiation.
Main Methods:
- Utilized replicative and oxidative stress-induced senescence models in primary human diploid fibroblasts.
- Employed pharmacological inhibition and siRNA knockdown of DNMT1.
- Conducted methylation-specific sequencing and transcriptomic profiling.
- Validated downstream targets of the SPINT2/c-Met signaling pathway.
Main Results:
- Discovered DNMT1 downregulation and SPINT2 upregulation precede senescence.
- Demonstrated that DNMT1 inhibition or knockdown induces senescence via SPINT2.
- Identified hypomethylation of SPINT2 promoter CpG sites upon DNMT1 suppression.
- Confirmed SPINT2-induced senescence occurs through c-Met inhibition, affecting genes like COL27A1, STAM2, and CBL.
Conclusions:
- Established DNMT1 downregulation as a key trigger for early senescence.
- Identified SPINT2 as a critical downstream effector of DNMT1 in senescence.
- Revealed a novel epigenetic mechanism involving DNMT1-mediated SPINT2 upregulation and c-Met inhibition in senescence initiation.
- Provided potential therapeutic targets for aging-related diseases.
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