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Role of CSPG receptor LAR phosphatase in restricting axon regeneration after CNS injury

机译:CSPG受体LAR磷酸酶在中枢神经系统损伤后限制轴突再生中的作用

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摘要

Extracellular matrix molecule chondroitin sulfate proteoglycans (CSPGs) are highly upregulated in scar tissues and form a potent chemical barrier for CNS axon regeneration. Recent studies support that the receptor protein tyrosine phosphatase σ (PTPσ) and its subfamily member leukocyte common antigen related phosphatase (LAR) act as transmembrane receptors to mediate CSPG inhibition. PTPσ deficiency increased regrowth of ascending axons into scar tissues and descending corticospinal tract (CST) axons into the caudal spinal cord after spinal cord injury (SCI). Pharmacological LAR inhibition enhanced serotonergic axon growth in SCI mice. However, transgenic LAR deletion on axon growth in vivo and role of LAR in regulating regrowth of other fiber tracts have not been studied. Here, we studied role of LAR in restricting regrowth of injured descending CNS axons in deficient mice. LAR deletion increased regrowth of serotonergic axons into scar tissues and caudal spinal cord after dorsal overhemitransection. LAR deletion also stimulated regrowth of CST fibers into the caudal spinal cord. LAR protein was upregulated days to weeks after injury and co-localized to serotonergic and CST axons. Moreover, LAR deletion improved functional recovery by increasing BMS locomotor scores and stride length and reducing grid walk errors. This is the first transgenic study that demonstrates crucial role of LAR in restricting regrowth of injured CNS axons.
机译:细胞外基质分子硫酸软骨素蛋白聚糖(CSPG)在疤痕组织中高度上调,并形成了CNS轴突再生的有效化学屏障。最近的研究支持受体蛋白酪氨酸磷酸酶σ(PTPσ)及其亚家族成员白细胞共同抗原相关的磷酸酶(LAR)作为跨膜受体来介导CSPG抑制。 PTPσ缺乏会增加脊髓损伤(SCI)后轴突向瘢痕组织的再生长,而皮质脊髓束突(CST)轴突向尾脊髓的下降。药理性LAR抑制作用增强了SCI小鼠的血清素能轴突生长。然而,尚未研究体内轴突生长的转基因LAR缺失以及LAR在调节其他纤维束再生中的作用。在这里,我们研究了LAR在限制受损小鼠中降落的CNS轴突再生中的作用。 LAR缺失增加了背侧半截肢切除后血清素能轴突向疤痕组织和尾脊髓的再生长。 LAR缺失还刺激了CST纤维向尾脊髓的再生。 LAR在受伤后数天至数周上调,并共定位于血清素能和CST轴突。此外,LAR缺失可通过增加BMS运动评分和步幅长度并减少网格行走错误来改善功能恢复。这是第一项证明LAR在限制受伤的CNS轴突再生中的关键作用的转基因研究。

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