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大型小鼠脑桥核神经元的切向神经元迁移缺陷与后脑腹外侧迁移停滞有关。

Defects in tangential neuronal migration of pontine nuclei neurons in the Largemyd mouse are associated with stalled migration in the ventrolateral hindbrain.

作者信息

Qu Qiang, Crandall James E, Luo Tuanlian, McCaffery Peter J, Smith Frances I

机构信息

University of Massachusetts Medical School, Shriver Center, 200 Trapelo Road, Waltham, MA 02452, USA.

出版信息

Eur J Neurosci. 2006 Jun;23(11):2877-86. doi: 10.1111/j.1460-9568.2006.04836.x.

Abstract

The LARGE gene encodes a putative glycosyltransferase that is required for normal glycosylation of dystroglycan, and defects in LARGE can cause abnormal neuronal migration in congenital muscular dystrophy (CMD). Previous studies have focused on radial migration, which is disrupted at least in part due to breaks in the basal lamina. Through analysis of precerebellar nuclei development in the Large(myd) mouse hindbrain, we show that tangential migration of a subgroup of hindbrain neurons may also be disrupted. Within the precerebellar nuclei, the pontine nuclei (PN) are severely disrupted, whereas the inferior olive (IO), external cuneate nuclei (ECN) and lateral reticular nuclei (LRN) appear unaffected. Large and dystroglycan are widely expressed in the hindbrain, including in the pontine neurons migrating in the anterior extramural migratory stream (AES). BrdU labeling and immunohistochemical studies suggest normal numbers of neurons begin their journey towards the ventral midline in the AES in the Large(myd) mouse. However, migration stalls and PN neurons fail to reach the midline, surviving as ectopic clusters of cells located under the pial surface dorsally and laterally to where they normally would finish their migration near the ventral midline. Stalling of PN neurons at this location is also observed in other migration disorders in mice. These observations suggest that glycan-dependent dystroglycan interactions are required for PN neurons to correctly respond to signals at this important migrational checkpoint.

摘要

LARGE基因编码一种假定的糖基转移酶,该酶是肌营养不良蛋白聚糖正常糖基化所必需的,LARGE基因缺陷可导致先天性肌营养不良(CMD)中神经元迁移异常。以往的研究集中在放射状迁移,这种迁移至少部分是由于基膜破裂而中断的。通过对Large(myd)小鼠后脑小脑前核发育的分析,我们发现后脑神经元亚群的切向迁移也可能受到干扰。在小脑前核内,脑桥核(PN)严重受损,而橄榄下核(IO)、楔外核(ECN)和外侧网状核(LRN)似乎未受影响。Large和肌营养不良蛋白聚糖在后脑广泛表达,包括在沿前壁外迁移流(AES)迁移的脑桥神经元中。BrdU标记和免疫组织化学研究表明,在Large(myd)小鼠中,正常数量的神经元开始在AES中向腹侧中线迁移。然而,迁移停滞,PN神经元无法到达中线,而是作为位于软膜表面背侧和外侧的异位细胞簇存活下来,而它们通常会在腹侧中线附近完成迁移。在小鼠的其他迁移障碍中也观察到PN神经元在此位置停滞。这些观察结果表明,聚糖依赖性肌营养不良蛋白聚糖相互作用是PN神经元在这个重要的迁移检查点正确响应信号所必需的。

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