Cells· 2026Q1
ERBB4: Stres ve Nörodejenerasyon Arasındaki Moleküler Bağlantı
ERBB4 and Neurodegeneration: Association Between Hypothalamic–Pituitary–Adrenal (HPA) Axis: Associated Neurodegenerative Pathogenesis
- 0atıf
- Q1SCImago
- 2026yıl
Kısa özet
ERBB4 sinyal iletimi, hipotalamik-hipofiz-adrenal (HPA) ekseni aracılı stres yanıtları ile nörodejeneratif hastalıkların gelişimi arasında kilit bir moleküler arayüz olarak görev yapabilir.
Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.
Ana noktalar
- ERBB4 sinyal iletimi, nöroendokrin düzenleme ve stres duyarlılığında rol oynamaktadır.
- ERBB4'ün düzensizliği, HPA ekseni disfonksiyonunu nöroinflamasyon ve nörodejenerasyonla ilişkilendirebilir.
- ERBB4 mutasyonları, oksidatif stres ve apoptoz gibi mekanizmalar yoluyla nörodejeneratif hastalıklarla ilişkilidir.
- ERBB4, stres sinyali ile nörodejeneratif patoloji arasındaki moleküler bir arayüzü temsil eder.
Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.
Özet (abstract)
The hypothalamic–pituitary–adrenal (HPA) axis is the central neuroendocrine system that controls physiological stress responses and maintains homeostasis through the coordinated interactions among the hypothalamus, pituitary gland, and adrenal cortex. Dysregulation of the HPA axis is associated with stress-related psychiatric conditions and neurodegenerative diseases, including Alzheimer’s disease, Parkinson’s disease, and amyotrophic lateral sclerosis. Chronic stress creates a detrimental environment in the brain, inducing structural changes and accelerating brain aging and the loss of neurons. Receptor tyrosine-protein kinase ERBB4 (ERBB4), a member of the epidermal growth factor receptor (EGFR) family, is activated primarily by neuregulin ligands and plays an essential role in neuronal development, synaptic plasticity, and cell survival. Emerging evidence suggests that ERBB4 signaling influences neuroendocrine regulation and stress responsivity. While further studies are needed to provide direct mechanistic evidence linking ERBB4-mediated HPA axis dysregulation to neurodegenerative cell death, this manuscript critically evaluated the preclinical models and proposes a possible feed-forward framework wherein ERBB4 served as a permissive homeostatic modulator at the intersection of stress endocrinology and neuroinflammation. Furthermore, the impact of ERBB4 dysregulation and its mutations on neurodegenerative diseases has been presented, focusing on potential mechanisms of oxidative stress, synaptic dysfunction, and neuronal apoptosis. Taken together, ERBB4 represents an important molecular interface between stress signaling and neurodegenerative pathology. Understanding the regulation of ERBB4 in the HPA axis has provided new insights into the mechanisms underlying neurodegenerative diseases and could identify novel therapeutic targets for stress-associated neurological disorders.
Yazarların özeti; kaynağından alınmıştır. Cells, 2026 · DOI ↗
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Alan: Davranışsal Sinirbilim
Behavioral NeuroscienceNeuroscience