Neurobiology Section, Division of Biological Sciences, University of California, San Diego, La Jolla, CA, USA.
Center for Neural Circuits and Behavior, University of California, San Diego, La Jolla, CA, USA.
Nat Neurosci. 2022 Jun;25(6):726-737. doi: 10.1038/s41593-022-01086-6. Epub 2022 Jun 2.
Learning induces the formation of new excitatory synapses in the form of dendritic spines, but their functional properties remain unknown. Here, using longitudinal in vivo two-photon imaging and correlated electron microscopy of dendritic spines in the motor cortex of mice during motor learning, we describe a framework for the formation, survival and resulting function of new, learning-related spines. Specifically, our data indicate that the formation of new spines during learning is guided by the potentiation of functionally clustered preexisting spines exhibiting task-related activity during earlier sessions of learning. We present evidence that this clustered potentiation induces the local outgrowth of multiple filopodia from the nearby dendrite, locally sampling the adjacent neuropil for potential axonal partners, likely via targeting preexisting presynaptic boutons. Successful connections are then selected for survival based on co-activity with nearby task-related spines, ensuring that the new spine preserves functional clustering. The resulting locally coherent activity of new spines signals the learned movement. Furthermore, we found that a majority of new spines synapse with axons previously unrepresented in these dendritic domains. Thus, learning involves the binding of new information streams into functional synaptic clusters to subserve learned behaviors.
学习会以树突棘的形式诱导新的兴奋性突触形成,但它们的功能特性仍不清楚。在这里,我们使用运动学习过程中小鼠运动皮层的树突棘的纵向体内双光子成像和相关电子显微镜,描述了一个新的、与学习相关的棘形成、存活和产生功能的框架。具体来说,我们的数据表明,学习过程中新棘的形成是由功能聚类的前体棘的增强指导的,这些前体棘在学习早期的会议中表现出与任务相关的活动。我们提供的证据表明,这种聚类增强会从附近的树突上诱导出多个丝状伪足的局部生长,局部从相邻的神经胶采样潜在的轴突伙伴,可能是通过靶向前体突触小泡。然后根据与附近与任务相关的棘的共同活动来选择成功的连接进行存活,以确保新的棘保持功能聚类。新棘的局部相干活动会对学习到的运动进行信号传递。此外,我们发现大多数新的棘与之前在这些树突域中未被代表的轴突形成突触。因此,学习涉及将新的信息流绑定到功能突触簇中,以支持学习行为。