C1ql1-Bai3信号是成熟浦肯野细胞攀爬纤维突触形成与神经元活动协调所必需的。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2023-07-24 DOI:10.1186/s13041-023-01048-4
Takahiro Aimi, Keiko Matsuda, Michisuke Yuzaki
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引用次数: 1

摘要

据报道,由学习和新环境引起的神经活动变化导致成人大脑中新突触的形成。然而,其潜在的分子机制尚不清楚。本研究表明,在发育过程中,攀爬纤维(CFs)消除弱CFs后,通过攀爬纤维(CFs)建立了成体型单突触神经支配的浦肯野细胞(PCs),可以通过增加CFs中突触组织者C1ql1或C1ql1受体Bai3的表达,由多个CFs进行再神经支配。在成人小脑中,已知CFs具有沿中外侧方向运行的横向分支,而不与pc形成突触。电生理、Ca2+成像和免疫组织化学研究表明,C1ql1或Bai3的过表达导致这些CF横枝延长,并在成熟PCs的远端树突上突触。当谷氨酸受体GluD2缺失时,成熟的PCs也被多个CFs重新神经支配,GluD2对于维持颗粒细胞和PCs之间的突触至关重要。有趣的是,在Bai3敲除的pc中没有观察到GluD2敲除的影响。此外,GluD2敲除小鼠的C1ql1水平在CFs中显著上调,表明内源性而非过度表达的C1ql1- bai3信号可以调节CFs对成熟PCs的再神经化。此外,C1ql1和Bai3过表达的影响分别需要PC和CF中的神经元活动。当CFs的神经元活性被抑制时,C1ql1在CF-PC突触的免疫反应性降低。这些结果表明,C1ql1-Bai3信号可能介导成熟PCs中CF突触的发生,可能与神经元活动一致。
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C1ql1-Bai3 signaling is necessary for climbing fiber synapse formation in mature Purkinje cells in coordination with neuronal activity.

Changes in neural activity induced by learning and novel environments have been reported to lead to the formation of new synapses in the adult brain. However, the underlying molecular mechanism is not well understood. Here, we show that Purkinje cells (PCs), which have established adult-type monosynaptic innervation by climbing fibers (CFs) after elimination of weak CFs during development, can be reinnervated by multiple CFs by increased expression of the synaptic organizer C1ql1 in CFs or Bai3, a receptor for C1ql1, in PCs. In the adult cerebellum, CFs are known to have transverse branches that run in a mediolateral direction without forming synapses with PCs. Electrophysiological, Ca2+-imaging and immunohistochemical studies showed that overexpression of C1ql1 or Bai3 caused these CF transverse branches to elongate and synapse on the distal dendrites of mature PCs. Mature PCs were also reinnervated by multiple CFs when the glutamate receptor GluD2, which is essential for the maintenance of synapses between granule cells and PCs, was deleted. Interestingly, the effect of GluD2 knockout was not observed in Bai3 knockout PCs. In addition, C1ql1 levels were significantly upregulated in CFs of GluD2 knockout mice, suggesting that endogenous, not overexpressed, C1ql1-Bai3 signaling could regulate the reinnervation of mature PCs by CFs. Furthermore, the effects of C1ql1 and Bai3 overexpression required neuronal activity in the PC and CF, respectively. C1ql1 immunoreactivity at CF-PC synapses was reduced when the neuronal activity of CFs was suppressed. These results suggest that C1ql1-Bai3 signaling may mediate CF synaptogenesis in mature PCs, potentially in concert with neuronal activity.

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4.30%
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567
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