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γ-原钙黏蛋白对脊髓 Ia 传入末梢形成的直接和间接调控。

Direct and Indirect Regulation of Spinal Cord Ia Afferent Terminal Formation by the γ-Protocadherins.

机构信息

Department of Biology, The University of Iowa Iowa City, IA, USA.

出版信息

Front Mol Neurosci. 2011 Dec 23;4:54. doi: 10.3389/fnmol.2011.00054. eCollection 2011.

Abstract

The Pcdh-γ gene cluster encodes 22 protocadherin adhesion molecules that interact as homophilic multimers and critically regulate synaptogenesis and apoptosis of interneurons in the developing spinal cord. Unlike interneurons, the two primary components of the monosynaptic stretch reflex circuit, dorsal root ganglion sensory neurons and ventral motor neurons (MNs), do not undergo excessive apoptosis in Pcdh-γ(del/del) null mutants, which die shortly after birth. However, as we show here, mutants exhibit severely disorganized Ia proprioceptive afferent terminals in the ventral horn. In contrast to the fine net-like pattern observed in wild-type mice, central Ia terminals in Pcdh-γ mutants appear clumped, and fill the space between individual MNs; quantitative analysis shows a ~2.5-fold increase in the area of terminals. Concomitant with this, there is a 70% loss of the collaterals that Ia afferents extend to ventral interneurons (vINs), many of which undergo apoptosis in the mutants. The Ia afferent phenotype is ameliorated, though not entirely rescued, when apoptosis is blocked in Pcdh-γ null mice by introduction of a Bax null allele. This indicates that loss of vINs, which act as collateral Ia afferent targets, contributes to the disorganization of terminals on motor pools. Restricted mutation of the Pcdh-γ cluster using conditional mutants and multiple Cre transgenic lines (Wnt1-Cre for sensory neurons; Pax2-Cre for vINs; Hb9-Cre for MNs) also revealed a direct requirement for the γ-Pcdhs in Ia neurons and vINs, but not in MNs themselves. Together, these genetic manipulations indicate that the γ-Pcdhs are required for the formation of the Ia afferent circuit in two ways: First, they control the survival of vINs that act as collateral Ia targets; and second, they provide a homophilic molecular cue between Ia afferents and target vINs.

摘要

Pcdh-γ 基因簇编码 22 种原钙粘蛋白黏附分子,这些分子以同种型多聚体相互作用,对发育中脊髓中间神经元的突触发生和凋亡起关键调控作用。与中间神经元不同,单突触牵张反射回路的两个主要组成部分,背根神经节感觉神经元和腹运动神经元(MNs),在 Pcdh-γ(del/del) 缺失突变体中不会经历过度凋亡,这些突变体在出生后不久就死亡。然而,正如我们在这里所示,突变体表现出 Ia 本体感受传入末端在腹角严重的组织紊乱。与在野生型小鼠中观察到的精细网状模式相反,Pcdh-γ 突变体中的中枢 Ia 末端看起来聚集在一起,并填充单个 MN 之间的空间;定量分析显示末端面积增加了约 2.5 倍。与此相一致的是,Ia 传入纤维延伸到腹侧中间神经元(vINs)的侧支减少了约 70%,其中许多在突变体中发生凋亡。当通过引入 Bax 缺失等位基因阻止 Pcdh-γ 缺失小鼠中的细胞凋亡时,Ia 传入的表型得到改善,但并未完全恢复。这表明,作为侧支 Ia 传入靶标的 vINs 的丧失导致运动池末端的紊乱。使用条件性突变体和多个 Cre 转基因系(Wnt1-Cre 用于感觉神经元;Pax2-Cre 用于 vINs;Hb9-Cre 用于 MNs)对 Pcdh-γ 簇进行限制突变,也揭示了 γ-Pcdhs 对 Ia 神经元和 vINs的直接需要,但对 MNs 本身没有直接需要。总之,这些遗传操作表明,γ-Pcdhs 以两种方式参与 Ia 传入回路的形成:首先,它们控制作为侧支 Ia 靶标的 vINs 的存活;其次,它们提供 Ia 传入纤维与靶 vINs 之间的同种型分子线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f45/3250626/1d8e9bddf981/fnmol-04-00054-g001.jpg

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