Sun Qian, Sotayo Alaba, Cazzulino Alejandro S, Snyder Anna M, Denny Christine A, Siegelbaum Steven A
Department of Neuroscience, Columbia University, New York, NY 10032, USA.
Department of Neuroscience, Columbia University, New York, NY 10032, USA.
Neuron. 2017 Aug 2;95(3):656-672.e3. doi: 10.1016/j.neuron.2017.07.012.
The hippocampal CA3 region is classically viewed as a homogeneous autoassociative network critical for associative memory and pattern completion. However, recent evidence has demonstrated a striking heterogeneity along the transverse, or proximodistal, axis of CA3 in spatial encoding and memory. Here we report the presence of striking proximodistal gradients in intrinsic membrane properties and synaptic connectivity for dorsal CA3. A decreasing gradient of mossy fiber synaptic strength along the proximodistal axis is mirrored by an increasing gradient of direct synaptic excitation from entorhinal cortex. Furthermore, we uncovered a nonuniform pattern of reactivation of fear memory traces, with the most robust reactivation during memory retrieval occurring in mid-CA3 (CA3b), the region showing the strongest net recurrent excitation. Our results suggest that heterogeneity in both intrinsic properties and synaptic connectivity may contribute to the distinct spatial encoding and behavioral role of CA3 subregions along the proximodistal axis.
海马体CA3区传统上被视为一个均匀的自联想网络,对联想记忆和模式完成至关重要。然而,最近的证据表明,在空间编码和记忆方面,CA3区沿横向(或近远轴)存在显著的异质性。在此,我们报告了背侧CA3区在内在膜特性和突触连接性方面存在显著的近远梯度。苔藓纤维突触强度沿近远轴递减的梯度与内嗅皮层直接突触兴奋递增的梯度相对应。此外,我们发现恐惧记忆痕迹的重新激活模式并不均匀,在记忆检索过程中,最强有力的重新激活发生在CA3中部(CA3b),该区域显示出最强的净循环兴奋。我们的结果表明,内在特性和突触连接性的异质性可能有助于CA3子区域沿近远轴发挥不同的空间编码和行为作用。