Carrasco M Angélica, Hidalgo Cecilia
Centro FONDAP de Estudios Moleculares de la Célula, Facultad de Medicina, Universidad de Chile, Santiago, Chile.
Cell Calcium. 2006 Nov-Dec;40(5-6):575-83. doi: 10.1016/j.ceca.2006.08.021. Epub 2006 Oct 10.
Neurons generate particular calcium microdomains in response to different stimuli. Calcium microdomains have a central role in a variety of neuronal functions. In particular, calcium microdomains participate in long-lasting synaptic plasticity--a neuronal response presumably correlated with cognitive brain functions that requires expression of new gene products. Stimulation of skeletal muscle generates - with few milliseconds delay - calcium microdomains that have a central role in the ensuing muscle contraction. In addition, recent evidence indicates that sustained stimulation of skeletal muscle cells in culture generates calcium microdomains, which stimulate gene expression but not muscle contraction. The mechanisms whereby calcium microdomains activate signaling cascades that lead to the transcription of genes known to participate in specific cellular responses are the central topic of this review. Thus, we will discuss here the signaling pathways and molecular mechanisms, which via activation of particular calcium-dependent transcription factors regulate the expression of specific genes or set of genes in neurons or skeletal muscle cells.
神经元会根据不同刺激产生特定的钙微区。钙微区在多种神经元功能中起着核心作用。特别是,钙微区参与持久的突触可塑性——这是一种神经元反应,可能与需要表达新基因产物的认知脑功能相关。刺激骨骼肌会在几毫秒的延迟后产生钙微区,这些钙微区在随后的肌肉收缩中起核心作用。此外,最近的证据表明,在培养物中持续刺激骨骼肌细胞会产生钙微区,其刺激基因表达但不引起肌肉收缩。钙微区激活信号级联反应从而导致参与特定细胞反应的基因转录的机制是本综述的核心主题。因此,我们将在此讨论信号通路和分子机制,它们通过激活特定的钙依赖性转录因子来调节神经元或骨骼肌细胞中特定基因或一组基因的表达。