Constarium
← Search

Omics · study · 2026

Insulin Signaling Functions as a Topological Switch That Couples Aging and Heat Stress Responsiveness

Listed in NCBI GEO

While aging and thermal stress are phenotypically intertwined, their transcriptomic signatures remain paradoxically distinct in Drosophila.

Description

Here, we demonstrate that this parallel modularity is not an inherent genomic constraint but is actively maintained by Insulin/IGF-1 signaling (IIS). Using transcriptomic analysis, we show that high IIS activity partitions the genome into orthogonal regulatory layers where aging and heat stress function as independent additive inputs.

Systemic attenuation of IIS triggers a transition to an integrated architecture. In this state, the genome’s perception of heat stress becomes age-dependent, enabling a hyper-adaptive induction of heat shock proteins in old adults—effectively reversing the typical age-related decline in proteostasis. We propose that the IIS pathway functions as a topological switch, shifting the genome from a modular growth-mode to an integrated maintenance-mode.

Read the rest (1 more)

Thus, dampening the response to heat stress with age is an adaptable regulatory state rather than an inevitable consequence of cellular senescence.

Links

Where it is published

Documentation and papers

Topics

From keywords
Life Sciences
Provenance · 1 source records, 7 field assertions
SourceKeyLast seenRaw
NCBI GEOGSE33879612 d agoJSON v1
FieldAssertionExtractorEvidence
access_levelsource · NCBI GEOconnector:ncbi_geo@1.0.0
concepts[field].local:field:life-sciencesmapping · NCBI GEOconnector:ncbi_geo@1.0.0
concepts[method].geo_series_type:expression-profiling-by-high-throughput-sequencingsource · NCBI GEOconnector:ncbi_geo@1.0.0/gdstype
concepts[organism].NCBITaxon:7227source · NCBI GEOconnector:ncbi_geo@1.0.0/taxon
descriptionsource · NCBI GEOconnector:ncbi_geo@1.0.0/summary
publication_datesource · NCBI GEOconnector:ncbi_geo@1.0.0
titlesource · NCBI GEOconnector:ncbi_geo@1.0.0/title