Lateral entorhinal cortex afferents reconfigure the activity in piriform cortex circuits.

IF 9.4 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Proceedings of the National Academy of Sciences of the United States of America Pub Date : 2024-11-26 Epub Date: 2024-11-21 DOI:10.1073/pnas.2414038121
Olivia Pedroncini, Noel Federman, Antonia Marin-Burgin
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Abstract

Odors are key signals for guiding spatial behaviors such as foraging and navigation in rodents. Recent findings reveal that odor representations in the piriform cortex (PCx) also encode spatial context information. However, the brain origins of this information and its integration into PCx microcircuitry remain unclear. This study investigates the lateral entorhinal cortex (LEC) as a potential source of spatial contextual information affecting the PCx microcircuit and its olfactory responses. Using mice brain slices, we performed patch-clamp recordings on superficial (SP) and deep (DP) pyramidal neurons, as well as parvalbumin (PV) and somatostatin (SOM) inhibitory interneurons. Concurrently, we optogenetically stimulated excitatory LEC projections to observe their impact on PCx activity. Results show that LEC inputs are heterogeneously distributed in the PCx microcircuit, evoking larger excitatory currents in SP and PV neurons due to higher monosynaptic connectivity. LEC inputs also differentially affect inhibitory circuits, activating PV while suppressing SOM interneurons. Studying the interaction between LEC inputs and sensory signals from the lateral olfactory tract (LOT) revealed that simultaneous LEC and LOT activation increases spiking in SP and DP neurons, with DP neurons showing a sharpened response due to LEC-induced inhibition that suppresses delayed LOT-evoked spikes. This suggests a regulatory mechanism where LEC inputs inhibit recurrent activity by activating PV interneurons. Our findings demonstrate that LEC afferents reconfigure PCx activity, aiding the understanding of how odor objects form within the PCx by integrating olfactory and nonolfactory information.

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侧脑皮层传入重新配置梨状皮层回路的活动
气味是指导啮齿动物觅食和导航等空间行为的关键信号。最近的研究发现,梨状皮层(PCx)中的气味表征也编码空间环境信息。然而,这种信息的大脑起源及其与 PCx 微电路的整合仍不清楚。本研究调查了外侧内侧皮层(LEC)作为影响 PCx 微电路及其嗅觉反应的空间背景信息的潜在来源。我们使用小鼠脑片对浅层(SP)和深层(DP)锥体神经元以及副阀素(PV)和体生长抑素(SOM)抑制性中间神经元进行了贴片钳记录。同时,我们对兴奋性 LEC 投射进行了光遗传刺激,以观察它们对 PCx 活动的影响。结果表明,LEC 输入在 PCx 微电路中分布不均,由于单突触连接性较高,会在 SP 和 PV 神经元中唤起较大的兴奋电流。LEC 输入还对抑制回路产生不同影响,在激活 PV 的同时抑制 SOM 中间神经元。研究 LEC 输入与来自外侧嗅束(LOT)的感觉信号之间的相互作用时发现,LEC 和 LOT 的同时激活会增加 SP 和 DP 神经元的尖峰突触,其中 DP 神经元由于 LEC 诱导的抑制抑制了 LOT 诱发的延迟尖峰突触,而显示出更敏锐的反应。这表明了一种调节机制,即 LEC 输入通过激活 PV 中间神经元来抑制递归活动。我们的研究结果表明,LEC 传入重新配置了 PCx 的活动,有助于理解气味对象是如何通过整合嗅觉和非嗅觉信息在 PCx 中形成的。
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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