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小脑苔藓纤维对单极刷状细胞亚型的选择性靶向。

Selective targeting of unipolar brush cell subtypes by cerebellar mossy fibers.

机构信息

Vollum Institute and Oregon Hearing Research Center, Oregon Health and Science University, Portland, United States.

出版信息

Elife. 2019 Apr 17;8:e44964. doi: 10.7554/eLife.44964.

Abstract

In vestibular cerebellum, primary afferents carry signals from single vestibular end organs, whereas secondary afferents from vestibular nucleus carry integrated signals. Selective targeting of distinct mossy fibers determines how the cerebellum processes vestibular signals. We focused on vestibular projections to ON and OFF classes of unipolar brush cells (UBCs), which transform single mossy fiber signals into long-lasting excitation or inhibition respectively, and impact the activity of ensembles of granule cells. To determine whether these contacts are indeed selective, connectivity was traced back from UBC to specific ganglion cell, hair cell and vestibular organ subtypes in mice. We show that a specialized subset of primary afferents contacts ON UBCs, but not OFF UBCs, while secondary afferents contact both subtypes. Striking anatomical differences were observed between primary and secondary afferents, their synapses, and the UBCs they contact. Thus, each class of UBC functions to transform specific signals through distinct anatomical pathways.

摘要

在前庭小脑,初级传入纤维携带来自单个前庭终器的信号,而来自前庭核的次级传入纤维则携带整合的信号。特定苔藓纤维的选择性靶向决定了小脑如何处理前庭信号。我们专注于前庭投射到单极刷状细胞(UBC)的 ON 和 OFF 两类,它们分别将单个苔藓纤维信号转化为持久的兴奋或抑制,并影响颗粒细胞的活动。为了确定这些接触是否确实具有选择性,我们从 UBC 追溯到了在小鼠中特定的神经节细胞、毛细胞和前庭器官亚型的连接。我们表明,一组专门的初级传入纤维接触 ON UBC,但不接触 OFF UBC,而次级传入纤维则接触这两种亚型。在初级和次级传入纤维、它们的突触以及它们所接触的 UBC 之间观察到了显著的解剖学差异。因此,每类 UBC 都通过不同的解剖途径来转换特定的信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99d0/6469928/13649042ed2d/elife-44964-fig1.jpg

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