首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Complexin I knockout rats exhibit a complex neurobehavioral phenotype including profound ataxia and marked deficits in lifespan
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Complexin I knockout rats exhibit a complex neurobehavioral phenotype including profound ataxia and marked deficits in lifespan

机译:CompleastIn I敲除大鼠表现出复杂的神经兽性表型,包括深刻的共济失调和寿命的缺陷

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摘要

Complexin I (CPLX1), a presynaptic small molecule protein, forms SNARE complex in the central nervous system involved in the anchoring, pre-excitation, and fusion of axonal end vesicles. Abnormal expression of CPLX1 occurs in several neurodegenerative and psychiatric disorders that exhibit disrupted neurobehaviors. CPLX1 gene knockout induces severe ataxia and social behavioral deficits in mice, which has been poorly demonstrated. Here, to address the limitations of single-species models and to provide translational insights relevant to human diseases, we used CPLX1 knockout rats to further explore the function of the CPLX1 gene. The CRISPR/Cas9 gene editing system was adopted to generate CPLX1 knockout rats (CPLX1(-/-)). Then, we characterized the survival rate and behavioral phenotype of CPLX1(-/-) rats using behavioral analysis. To further explain this phenomenon, we performed blood glucose testing, Nissl staining, hematoxylin-eosin staining, and Golgi staining. We found that CPLX1(-/-) rats showed profound ataxia, dystonia, movement and exploratory deficits, and increased anxiety and sensory deficits but had normal cognitive function. Nevertheless, CPLX1(-/-) rats could swim without training. The abnormal histomorphology of the stomach and intestine were related to decreased weight and early death in these rats. Decreased dendritic branching was also found in spinal motor neurons in CPLX1(-/-) rats. In conclusion, CPLX1 gene knockout induced the abnormal histomorphology of the stomach and intestine and decreased dendritic branching in spinal motor neurons, causing different phenotypes between CPLX1(-/-) rats and mice, even though both of these phenotypes showed profound ataxia. These findings provide a new perspective for understanding the role of CPLX1.
机译:复合物I(CPLX1),突触前的小分子蛋白,在中枢神经系统中形成陷阱复合物,其涉及锚定,预激发和轴突末端囊泡的融合。 CPLX1的异常表达发生在几种神经变性和精神病疾病中,所述精神病学疾病表现出破坏的神经敌意。 CPLX1基因敲除诱导小鼠的严重的共济失调和社会行为缺陷,这已经证明了很差。在这里,为了解决单种式模型的局限性,并提供与人类疾病相关的翻译洞察力,我们使用CPLX1敲除大鼠进一步探索CPLX1基因的功能。采用CRISPR / CAS9基因编辑系统生成CPLX1敲除大鼠(CPLX1( - / - ))。然后,我们表征了使用行为分析的CPLX1( - / - )大鼠的存活率和行为表型。为了进一步解释这种现象,我们进行了血糖试验,NISL染色,苏木精 - 曙红染色和高尔基染色。我们发现CPLX1( - / - )大鼠表现出深刻的共济失调,Dystonia,运动和探索性缺陷,以及增加的焦虑和感官赤字,但具有正常的认知功能。然而,CPLX1( - / - )大鼠可能在没有训练的情况下游泳。胃和肠的异常组织形态学与这些大鼠的重量和早期死亡降低有关。在CPLX1( - / - )大鼠中,还发现了树突状分枝下降。总之,CPLX1基因敲除诱导胃癌的异常组织形态,脊髓运动神经元中的树突状分支减少,导致CPLX1( - / - )大鼠和小鼠之间的不同表型,即使这两种表型表现出深刻的共济失调。这些调查结果为了解CPLX1的作用提供了一种新的视角。

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  • 作者单位

    Sichuan Univ &

    Res Units w China w China Hosp Inst Neurol Dis Chinese Acad Med Sciences Translat;

    Sichuan Univ &

    Res Units w China w China Hosp Inst Neurol Dis Chinese Acad Med Sciences Translat;

    Kunming Med Univ Inst Neuroscience Lab Zool Dept Kunming Peoples R China;

    Sichuan Univ &

    Res Units w China w China Hosp Inst Neurol Dis Chinese Acad Med Sciences Translat;

    Sichuan Univ &

    Res Units w China w China Hosp Inst Neurol Dis Chinese Acad Med Sciences Translat;

    Sichuan Univ &

    Res Units w China w China Hosp Inst Neurol Dis Chinese Acad Med Sciences Translat;

    Sichuan Univ &

    Res Units w China w China Hosp Inst Neurol Dis Chinese Acad Med Sciences Translat;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    CPLX1; Ataxia; Dystonia; Rat; Husbandry;

    机译:cplx1;共济失调;肌瘤;老鼠;饲养;
  • 入库时间 2022-08-20 06:09:25

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