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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Abnormalities in the cerebellum and brainstem in homozygous lurcher mice.
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Abnormalities in the cerebellum and brainstem in homozygous lurcher mice.

机译:纯合小鼠的小脑和脑干异常。

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The lurcher mutation induces Purkinje cell degeneration in heterozygous mice, and neonatal death in homozygous animals. Using the D6Mit16 Simple Sequence Length Polymorphic marker in F2 hybrids between AKR +/+ mice and B6+/Lc mice, homozygous lurcher fetuses and newborns as well as heterozygous and normal littermates were identified, and their brain morphology was analysed. In homozygous lurcher embryos at embryonic day 18 and neonates the cerebellum was hypotrophic, particularly in the posterior half. Purkinje cells were smaller in the whole cerebellum and showed a maturational delay. Calretinin-positive cells were less frequently observed in the depth of the vermis than in normal mice. Both Purkinje cells and the vermal calretinin-positive cells were more abnormal in fetuses at day 19 and newborn mutants than one day earlier. An abnormal number of pycnotic cells were observed in the cerebellum, especially in newborn mutants. Brainstem abnormalities were characterized by abnormal curvature, caudal displacement of the pontine gray nuclei which were located caudally along the ventral border of the superior olivary complex, a drastic decrease in Purkinje cell axons in all the vestibular nuclei and the presence of dystrophic processes in at least two calbindin-positive cell groups of the dorsal pontine region. These results show that the mutation, which is semidominant in Purkinje cells, is recessive in other cell groups of the cerebellum and brainstem. They reveal that the sequence leading to Purkinje cell death appears to be similar in homozygous and heterozygous mice, although occurring earlier and worsening more quickly in the former. Lastly, they confirm the absence of effect of the mutation on the neurons of the inferior olivary complex.
机译:潜伏者突变在杂合小鼠中诱导浦肯野细胞变性,在纯合动物中诱导新生儿死亡。使用AKR + / +小鼠和B6 + / Lc小鼠之间的F2杂种中的D6Mit16简单序列长度多态性标记,鉴定纯合的lur胎儿和新生儿以及杂合子和正常同窝仔,并分析了它们的大脑形态。在胚胎第18天和新生儿的纯合性胚胎中,小脑营养不良,尤其是在后半部。浦肯野细胞在整个小脑中较小,并表现出成熟延迟。与正常小鼠相比,在ret骨深度观察到钙网蛋白阳性细胞的频率较低。与第一天相比,在第19天的胎儿和新生突变体中,浦肯野细胞和维甲酸钙网蛋白阳性细胞均异常。在小脑中,尤其是在新生突变体中,观察到了明显数量的脓毒力细胞。脑干异常的特征是曲率异常,位于上橄榄叶复合体腹侧尾部的桥脑灰核的尾端移位,所有前庭核的浦肯野细胞轴突急剧减少以及至少在至少一部分中存在营养不良过程桥脑背区域的两个钙结合蛋白阳性细胞群。这些结果表明,该突变在浦肯野细胞中占主导地位,在小脑和脑干的其他细胞群中是隐性的。他们揭示了导致浦肯野细胞死亡的序列在纯合子和杂合子小鼠中似乎相似,尽管发生得更早并且在前者中恶化得更快。最后,他们证实了突变对下橄榄复合体神经元的影响。

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