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The A30P alpha-synuclein mutation decreases subventricular zone proliferation

机译:A30Pα-突触核蛋白突变降低了脑内区域增殖

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摘要

Parkinson's disease (PD) is associated with olfactory defects in addition to dopaminergic degeneration. Dopaminergic signalling is necessary for subventricular zone (SVZ) proliferation and olfactory bulb (OB) neurogenesis. Alpha-synuclein (alpha-syn or Snca) modulates dopaminergic neurotransmission, and SNCA mutations cause familial PD, but how alpha-syn and its mutations affect adult neurogenesis is unclear. To address this, we studied a bacterial artificial chromosome transgenic mouse expressing the A30P SNCA familial PD point mutation on an Snca(-/-) background. We confirmed that the SNCA-A30P transgene recapitulates endogenous alpha-syn expression patterns and levels by immunohistochemical detection of endogenous alpha-syn in a wild-type mouse and transgenic SNCA-A30P alpha-syn protein in the forebrain. The number of SVZ stem cells (BrdU+GFAP+) was decreased in SNCA-A30P mice, whereas proliferating (phospho-histone 3+) cells were decreased in Snca(-/-) and even more so in SNCA-A30P mice. Similarly, SNCA-A30P mice had fewer Mash1+ transit-amplifying SVZ progenitor cells but Snca(-/-) mice did not. These data suggest the A30P mutation aggravates the effect of Snca loss in the SVZ. Interestingly, calbindin+ and calretinin (CalR)+ periglomerular neurons were decreased in both Snca(-/-), and SNCA-A30P mice but tyrosine hydroxylase+ periglomerular OB neurons were only decreased in Snca(-/-) mice. Cell death decreased in the OB granule layer of Snca(-/-) and SNCA-A30P mice. In the same region, CalR+ numbers increased in Snca(-/-) and SNCA-A30P mice. Thus, alpha-syn loss and human A30P SNCA decrease SVZ proliferation, cell death in the OB and differentially alter interneuron numbers. Similar disruptions in human neurogenesis may contribute to the olfactory deficits, which are observed in PD.
机译:除了多巴胺能退化之外,帕金森病(Pd)与嗅觉缺陷有关。小胺能信号传导是子心房区(SVZ)增殖和嗅灯泡(OB)神经发生的必要条件。 α-突触核蛋白(α-综合素或SNCA)调节多巴胺能神经递质,SNCA突变引起家族性PD,但α-SYN及其突变如何影响成人神经发生。为了解决这一点,我们研究了一种在SNCA(/ - )背景下表达A30P SNCA家族性PD点突变的细菌人工染色体转基因小鼠。我们确认SNCA-A30P转基因通过在前脑中野生型小鼠和转基因SNCA-A30Pα-SYN蛋白中的内源性α-SYN的免疫组化检测通过免疫组织化学检测来鉴定内源性α-SYN表达模式和水平。 SNCA-A30P小鼠中,SVZ干细胞(BRDU + GFAP +)的数量降低,而在SNCA( - / - )中,增殖(磷酸组蛋白3 +)细胞在SNCA-A30P小鼠中减少。类似地,SNCA-A30P小鼠具有较少的MASH1 +过渡扩增SVZ祖细胞,但SNCA( - / - )小鼠没有。这些数据表明A30P突变加剧了SVZ中SNCA损失的影响。有趣的是,Calbindin +和Calretinin(Calr)+ Periglomer神经元在SNCA( - / - )和SNCA-A30P小鼠中减少,但酪氨酸羟化酶+ Periglemerob神经元仅在SNCA( - / - )小鼠中降低。 SNCA( - / - )和SNCA-A30P小鼠的OB颗粒层中的细胞死亡降低。在同一区域中,CALR +数字在SNCA(/ - )和SNCA-A30P小鼠中增加。因此,α-SYN损失和人A30P SNCA降低SVZ增殖,在OB和差异改变的内核数中的细胞死亡。人神经发生的类似破坏可能有助于在PD中观察到的嗅觉缺陷。

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  • 来源
    《Human Molecular Genetics》 |2019年第14期|共12页
  • 作者单位

    Univ Oxford Dept Physiol Anat &

    Genet Le Gros Clark Bldg South Parks Rd Oxford OX1 3QX England;

    Univ Oxford Dept Physiol Anat &

    Genet Le Gros Clark Bldg South Parks Rd Oxford OX1 3QX England;

    Univ Oxford Dept Physiol Anat &

    Genet Le Gros Clark Bldg South Parks Rd Oxford OX1 3QX England;

    Univ Oxford Dept Physiol Anat &

    Genet Le Gros Clark Bldg South Parks Rd Oxford OX1 3QX England;

    Univ Oxford Dept Physiol Anat &

    Genet Le Gros Clark Bldg South Parks Rd Oxford OX1 3QX England;

    Jilin Univ Coll Vet Med 5333 Xi An Rd Changchun 130062 Jilin Peoples R China;

    Jilin Univ Coll Vet Med 5333 Xi An Rd Changchun 130062 Jilin Peoples R China;

    Univ Oxford Dept Physiol Anat &

    Genet Le Gros Clark Bldg South Parks Rd Oxford OX1 3QX England;

    Univ Oxford Dept Physiol Anat &

    Genet Le Gros Clark Bldg South Parks Rd Oxford OX1 3QX England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
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