Neuromolecular medicine

Single-Cell Analysis Shows That a Specific Protein Pathway Causes Aging in Support Brain Cells Through Calcium Signals and Influences Neuron Damage Related to Alzheimer's Disease

Updated

Abstract

A marked reduction in astrocyte expression was observed in Alzheimer's disease (AD) brains.

  • Senescent astrocytes may drive neuroinflammation and neuronal damage through the senescence-associated secretory phenotype (SASP).
  • The gene SORBS1 was identified as a key senescence-related gene selectively up-regulated in astrocytes in AD.
  • SORBS1 is significantly enriched in calcium-signaling pathways, which may play a role in astrocyte senescence.
  • Functional assays indicated that SORBS1 accelerated astrocyte senescence, potentially contributing to neuronal damage in AD.
  • Interactions between SORBS1 and FBXO22 were validated, indicating a mechanism for the degradation of BAG3, which amplifies calcium signaling.

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Competing interests

Declarations. Competing interests: The authors declare no competing interests. Ethics Approval and Consent to Participate: Not applicable.
PubMed

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