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Gbx1-/- 小鼠突变体的特征:Gbx1 对正常运动和感觉运动回路发育的必要性。

Characterization of the Gbx1-/- mouse mutant: a requirement for Gbx1 in normal locomotion and sensorimotor circuit development.

机构信息

Division of Biological Sciences, University of Missouri, Columbia, Missouri, United States of America.

出版信息

PLoS One. 2013;8(2):e56214. doi: 10.1371/journal.pone.0056214. Epub 2013 Feb 13.

Abstract

The Gbx class of homeobox genes encodes DNA binding transcription factors involved in regulation of embryonic central nervous system (CNS) development. Gbx1 is dynamically expressed within spinal neuron progenitor pools and becomes restricted to the dorsal mantle zone by embryonic day (E) 12.5. Here, we provide the first functional analysis of Gbx1. We generated mice containing a conditional Gbx1 allele in which exon 2 that contains the functional homeodomain is flanked with loxP sites (Gbx1(flox)); Cre-mediated recombination of this allele results in a Gbx1 null allele. In contrast to mice homozygous for a loss-of-function allele of Gbx2, mice homozygous for the Gbx1 null allele, Gbx1(-/-), are viable and reproductively competent. However, Gbx1(-/-) mice display a gross locomotive defect that specifically affects hindlimb gait. Analysis of embryos homozygous for the Gbx1 null allele reveals disrupted assembly of the proprioceptive sensorimotor circuit within the spinal cord, and a reduction in ISL1(+) ventral motor neurons. These data suggest a functional requirement for Gbx1 in normal development of the neural networks that contribute to locomotion. The generation of this null allele has enabled us to functionally characterize a novel role for Gbx1 in development of the spinal cord.

摘要

Gbx 类同源盒基因编码参与调控胚胎中枢神经系统 (CNS) 发育的 DNA 结合转录因子。Gbx1 在脊髓神经元祖细胞池内呈动态表达,并在胚胎第 12.5 天 (E) 被限制在背侧帽状区。在这里,我们提供了对 Gbx1 的首次功能分析。我们生成了携带条件性 Gbx1 等位基因的小鼠,其中包含功能性同源域的外显子 2 侧翼带有 loxP 位点(Gbx1(flox));该等位基因的 Cre 介导重组导致 Gbx1 缺失等位基因。与 Gbx2 功能丧失等位基因纯合的小鼠相比,Gbx1 缺失等位基因纯合的小鼠,Gbx1(-/-),是存活和繁殖能力正常的。然而,Gbx1(-/-) 小鼠表现出严重的运动缺陷,特别是影响后肢步态。对 Gbx1 缺失等位基因纯合的胚胎进行分析表明,脊髓内本体感觉运动回路的组装被破坏,并且 ISL1(+) 腹侧运动神经元减少。这些数据表明 Gbx1 在参与运动的神经网络的正常发育中具有功能要求。该缺失等位基因的产生使我们能够对 Gbx1 在脊髓发育中的新作用进行功能表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33f7/3572027/6cd58bf40a35/pone.0056214.g001.jpg

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