Ma Jie, Lowe Graeme
Monell Chemical Senses Center, Philadelphia, Pennsylvania 19104-3308, USA.
J Neurosci. 2004 Oct 20;24(42):9341-52. doi: 10.1523/JNEUROSCI.1782-04.2004.
In the accessory olfactory bulb (AOB), sensory neurons expressing a given vomeronasal receptor (VR) gene send divergent projections to many glomeruli, and second-order neurons (mitral cells) link to multiple glomeruli via branched primary dendrites. We used calcium imaging and paired somadendritic patch-clamp recording to track backpropagated action potentials (APs) in rat AOB primary dendrites. In cells loaded with 150 microm Calcium Orange, somatic spikes elicited fluorescence transients over the entire primary dendritic tree, and the relative fluorescence increment DeltaF/F(0) increased along all branches from soma to glomeruli. Backpropagation was reliant on Na+ channels: in 1 microm TTX, somatic AP commands evoked dendritic Ca2+ transients that declined steeply with distance. In paired soma- dendritic whole-cell recordings, backpropagated APs were unattenuated up to approximately 200 microm from the soma, whereas subthreshold voltage transients decayed markedly. Computational modeling indicated that the large distal Ca2+ transients are consistent with active, not passive, backpropagation. Genetic tracing in the AOB has suggested homotypic connectivity with individual mitral cell dendritic arbors projecting only to glomeruli targeted by sensory neurons expressing the same VR gene. Non-decremental, non-dichotomous backpropagation in AOB primary dendrites ensures fast, reliable communication between mitral cells and their homotypic glomeruli, binding them into functional modules in accordance with their VR-coded inputs.
在副嗅球(AOB)中,表达特定犁鼻器受体(VR)基因的感觉神经元向许多肾小球发出发散性投射,而二级神经元( mitral细胞)通过分支的初级树突与多个肾小球相连。我们使用钙成像和配对的体树突膜片钳记录来追踪大鼠AOB初级树突中的反向传播动作电位(APs)。在用150微摩尔钙橙加载的细胞中,体细胞尖峰在整个初级树突树上引发荧光瞬变,并且相对荧光增量DeltaF/F(0) 从体细胞到肾小球沿所有分支增加。反向传播依赖于Na+通道:在1微摩尔TTX中,体细胞AP指令引发的树突状Ca2+瞬变随距离急剧下降。在配对的体树突全细胞记录中,反向传播的APs在距离体细胞约200微米处不衰减,而阈下电压瞬变则明显衰减。计算模型表明,大的远端Ca2+瞬变与主动而非被动的反向传播一致。AOB中的基因追踪表明,单个mitral细胞树突 Arbor与仅投射到表达相同VR基因的感觉神经元靶向的肾小球之间存在同型连接。AOB初级树突中的非递减、非二分反向传播确保了mitral细胞与其同型肾小球之间快速、可靠的通信,根据其VR编码输入将它们绑定到功能模块中。