Department of Molecular and Cellular Physiology, Stanford University School of Medicine, Stanford, CA 94305, USA.
Department of Molecular and Cellular Physiology, Stanford University School of Medicine, Stanford, CA 94305, USA; Howard Hughes Medical Institute, Stanford University School of Medicine, Stanford, CA 94305, USA.
Neuron. 2020 Jul 8;107(1):144-157.e4. doi: 10.1016/j.neuron.2020.04.004. Epub 2020 May 4.
During social transmission of food preference (STFP), the combination of an olfactory sensory input with a social cue induces long-term memory of a food odor. How a social cue produces long-term learning of an olfactory input, however, remains unknown. Here we show that the neurons of the anterior olfactory nucleus (AON), which form abundant synaptic projections onto granule cells in the olfactory bulb (OB), express the synaptogenic molecule C1ql3. Deletion of C1ql3 in the dorsolateral AON impaired synaptic AON→OB connections and abolished acquisition, but not recall, of STFP memory without significantly affecting basal olfaction. Moreover, deletion in granule cells of the OB of Bai3, a postsynaptic GPCR that binds C1ql3, similarly suppressed synaptic transmission at AON→OB projections and abolished acquisition, but not recall, of STFP memory. Thus, synaptic AON→OB connections are selectively required for STFP memory acquisition and are formed by an essential interaction of presynaptic C1ql3 with postsynaptic Bai3.
在食物偏好的社会传递(STFP)中,嗅觉感觉输入与社会线索的结合会诱导食物气味的长期记忆。然而,社会线索如何产生嗅觉输入的长期学习仍然未知。在这里,我们发现,前嗅核(AON)的神经元表达突触形成分子 C1ql3,该神经元在前嗅核上形成丰富的突触投射到嗅球(OB)的颗粒细胞上。在 AON 的背外侧删除 C1ql3 会损害 AON→OB 连接的突触,并消除 STFP 记忆的获得,但不会明显影响基础嗅觉,而不会明显影响基础嗅觉。此外,OB 颗粒细胞中的 Bai3 缺失(一种与 C1ql3 结合的突触后 GPCR)同样抑制 AON→OB 投射的突触传递,并消除 STFP 记忆的获得,但不会消除记忆的回忆。因此,选择性地需要 AON→OB 连接来获得 STFP 记忆,并且是由突触前 C1ql3 与突触后 Bai3 的基本相互作用形成的。