Development, Disease Models, and Therapeutics Graduate Program, Baylor College of Medicine, Houston, Texas, USA.
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas, USA.
Genesis. 2024 Apr;62(2):e23595. doi: 10.1002/dvg.23595.
Adult neurogenesis has fascinated the field of neuroscience for decades given the prospects of harnessing mechanisms that facilitate the rewiring and/or replacement of adult brain tissue. The subgranular zone of the hippocampus and the subventricular zone of the lateral ventricle are the two main areas in the brain that exhibit ongoing neurogenesis. Of these, adult-born neurons within the olfactory bulb have proven to be a powerful model for studying circuit plasticity, providing a broad and accessible avenue into neuron development, migration, and continued circuit integration within adult brain tissue. This review focuses on some of the recognized molecular and signaling mechanisms underlying activity-dependent adult-born neuron development. Notably, olfactory activity and behavioral states contribute to adult-born neuron plasticity through sensory and centrifugal inputs, in which calcium-dependent transcriptional programs, local translation, and neuropeptide signaling play important roles. This review also highlights areas of needed continued investigation to better understand the remarkable phenomenon of adult-born neuron integration.
成体神经发生几十年来一直令神经科学界着迷,因为人们有望利用这些机制来实现大脑组织的重新布线和/或替换。海马的颗粒下区和侧脑室的室下区是大脑中两个主要的具有持续神经发生的区域。在这些区域中,嗅球中的成年新生神经元已被证明是研究回路可塑性的有力模型,为研究神经元发育、迁移和成年脑组织中持续的回路整合提供了广泛而易于接近的途径。本综述重点介绍了一些已知的与活动依赖性成年新生神经元发育相关的分子和信号机制。值得注意的是,嗅觉活动和行为状态通过感觉和离心输入促进成年新生神经元的可塑性,其中钙依赖性转录程序、局部翻译和神经肽信号发挥着重要作用。本综述还强调了需要继续研究的领域,以更好地理解成年新生神经元整合这一惊人现象。