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Imbalance of neural cell adhesion molecule and polysialyltransferase alleles causes defective brain connectivity

机译:神经细胞粘附分子和聚唾液酸转移酶等位基因的失衡导致脑部连通性受损

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摘要

The neural cell adhesion molecule (NCAM) and its post-translational modification polysialic acid (polySia) are broadly implicated in neural development. Mice lacking the polysialyltransferases ST8SiaII and ST8SiaIV are devoid of polySia, and show severe malformation of major brain axon tracts. Here, we demonstrate how allelic variation of three interacting gene products (NCAM, ST8SiaII and ST8SiaIV) translates into various degrees of anterior commissure, corpus callosum and internal capsule hypoplasia. Loss of ST8SiaII alone caused mild, but distinct defects and the severity of the pathological phenotype found in mice lacking both polysialyltransferases could be stepwise attenuated by reducing NCAM expression. Analysis of mice with overall nine selected combinations of mutant NCAM and polysialyltransferase alleles revealed that the extent of the fibre tract deficiencies was not linked to the total amount of polySia or NCAM, but correlated strictly with the level of NCAM erroneously devoid of polySia during brain development. The defects implemented by the gain of polySia-free NCAM were reminiscent to abnormalities found in patients with schizophrenia. Since variations in NCAM1 and ST8SIA2 have been implicated in schizophrenia, these findings provide a mechanism how genetic interference with the complex coordination of NCAM polysialylation may lead to a neurodevelopmental predisposition to schizophrenia.
机译:神经细胞粘附分子(NCAM)及其翻译后修饰的聚唾液酸(polySia)在神经发育中具有广泛的意义。缺乏聚唾液酸转移酶ST8SiaII和ST8SiaIV的小鼠没有polySia,并且显示出主要脑轴突束的严重畸形。在这里,我们证明了三种相互作用的基因产物(NCAM,ST8SiaII和ST8SiaIV)的等位基因变异如何转化为不同程度的前连合,体和内囊发育不全。单独缺失ST8SiaII会引起轻度但明显的缺陷,并且在缺乏两种聚唾液酸转移酶的小鼠中发现的病理表型的严重性可以通过降低NCAM的表达逐步减轻。分析小鼠的全部九种突变NCAM和聚唾液酸转移酶等位基因组合,发现纤维束缺陷的程度与polySia或NCAM的总量无关,但与脑发育过程中错误缺乏polySia的NCAM水平密切相关。 。通过获得无polySia的NCAM造成的缺陷使人联想到精神分裂症患者中发现的异常。由于NCAM1和ST8SIA2的变异与精神分裂症有关,因此这些发现提供了一种机制,即遗传干扰NCAM多唾液酸化的复杂配体如何可能导致精神分裂症的神经发育易感性。

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