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Inducing Long-Term Plasticity of Intrinsic Neuronal Excitability in Neurons of the Dorsal Lateral Geniculate Nucleus
Published on: September 20, 2024
Neonatal isolation accelerates the developmental switch in the signalling cascades for long-term potentiation
Chiung-Chun Huang1, Pei-Hsuan Chou, Chih-Hao Yang
1Department of Pharmacology, College of Medicine, National Cheng Kung University, No. 1, University Road, Tainan 701, Taiwan.
Insights
Mild neonatal isolation accelerates hippocampal long-term potentiation (LTP) maturation by activating the corticotrophin-releasing factor (CRF) system, enhancing CaMKIIalpha expression and promoting developmental signaling. This early isolation primes the hippocampus for faster LTP development.
Area of Science:
- Neuroscience
- Developmental Biology
- Molecular Biology
Background:
- Long-term potentiation (LTP) mechanisms in the hippocampus change with age.
- The physiological regulators of this developmental shift remain unclear.
Purpose of the Study:
- To investigate the role of neonatal isolation in modulating hippocampal LTP development.
- To elucidate the molecular signaling pathways involved in this process.
Main Methods:
- Studied the effects of mild neonatal isolation on hippocampal CA1 LTP induction.
- Investigated the involvement of cyclic AMP-dependent protein kinase (PKA), Ca2+/calmodulin-dependent protein kinase II (CaMKII), and corticotrophin-releasing factor (CRF) signaling.
- Examined CaMKIIalpha gene expression in cultured hippocampal neurons.
Main Results:
- Neonatal isolation accelerated the switch from PKA- to CaMKII-dependent LTP signaling via CRF activation.
- CRF increased CaMKIIalpha expression, mediated by CRF1 receptors and PKA.
- CRF signaling was crucial for normal LTP maturation.
Conclusions:
- CRF plays a novel role in regulating hippocampal development and LTP maturation.
- Appropriate neonatal isolation can promote an endocrine state that accelerates the development of hippocampal LTP signaling cascades.
Abstract:
The molecular mechanisms underlying long-term potentiation (LTP) in the CA1 region of the hippocampus are known to vary with developmental age. The physiological factors regulating this developmental change, however, have not yet been elucidated. Here we show that mild neonatal isolation accelerates the developmental switch in the signalling cascades for hippocampal CA1 LTP induction from a cyclic AMP-dependent protein kinase (PKA)- to a Ca2(+)/calmodulin-dependent protein kinase II (CaMKII)-dependent pattern via the activation of the corticotrophin-releasing factor (CRF) system. Furthermore, this action appears to be mediated through an increased transcription of the alpha isoform of the CaMKII (CaMKIIalpha) gene. We also demonstrate that application of CRF to cultured hippocampal neurones significantly increases the expression of CaMKIIalpha, which is blocked by the non-specific CRF receptor antagonist astressin, the specific CRF receptor 1 antagonist NBI 27911, and the PKA inhibitor KT5720, but not by the CRF receptor 2 antagonist K 41498, or the protein kinase C inhibitor, bisindolylmaleimide I. CRF signalling also mediates the normal maturation of LTP. These results suggest a novel role for CRF in regulating early developmental events in the hippocampus, and indicate that, although maternal deprivation is stressful for the neonate, appropriate neonatal isolation can serve to promote an endocrine state that fosters the rate of maturation of the signalling cascades underlying the induction of LTP in the developing hippocampus.
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