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Transgenic overexpression of polysialyltransferase ST8SiaIV under the control of a neuron-specific promoter does not affect brain development but impairs exploratory behavior

机译:在神经元特异性启动子的控制下,多糖转移酶ST8SiaIV的转基因过表达不会影响大脑发育,但损害探索行为

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A large body of the literature has demonstrated that the polysialic acid (polySia) modification of the neural cell adhesion molecule (NCAM) is a key regulator of cellular interactions during brain development, maintenance and plasticity. To properly fulfill these functions, polySia concentration has to be carefully controlled. This is done by the regulation of the expression of the two polySia-synthesizing enzymes ST8SiaII and ST8SiaIV. From this point of view we and others have demonstrated that downregulation of ST8SiaIV during oligodendrocyte differentiation is a prerequisite for efficient myelin formation and maintenance. Here, we addressed the question whether the prevention of polySia downregulation in neurons affects brain and particularly myelin development and functioning. For this purpose, we developed transgenic (tg) mouse lines overexpressing the polysialyltransferase ST8SiaIV in neurons. tg expression of ST8SiaIV prevented the postnatal downregulation of polySia, and most of the polySias in the forebrain and brain stem of adult tg mice were associated with NCAM-140 and NCAM-180 isoforms. Structural examination of the brain revealed no overt abnormalities of axons and myelin. In addition, ultrastructural and western blot analyses indicated normal myelin development. However, behavioral studies revealed reduced rearing activity, a measure for exploratory behavior, while parameters of motor activity were not affected in tg mice. Taken together, these results suggest that a persisting presence of polySia in neurons has no major effect on brain structure, myelination and myelin maintenance, but causes mild behavioral changes.
机译:大量的文献已经证明了神经细胞粘附分子(NCAM)的聚核酸(Polysia)改性是脑开发,维护和可塑性期间细胞相互作用的关键调节因子。为了适当地满足这些功能,必须仔细控制多种多元浓度。这是通过调节两种综合酶ST8Siaii和ST8SiaIV的表达的调节来完成的。从这个角度来看,我们和其他人已经证明,在少突卵细胞分化期间ST8SiaIV的下调是有效髓鞘形成和维护的先决条件。在这里,我们解决了神经元在神经元下调的预防影响大脑和特别是髓鞘的发挥作用的问题。为此目的,我们开发了过表达神经元的多糖转移酶ST8SIAIV的转基因(TG)小鼠线。 ST8Siaia的TG表达阻止了多血症的后下调,并且成人TG小鼠的前脑和脑干中的大部分积极症与NCAM-140和NCAM-180同种型相关。对大脑的结构检查揭示了轴突和髓鞘的明显异常。此外,超微结构和Western印迹分析表明正常髓鞘开发。然而,行为研究显示饲养减少,探索性行为的措施,而马达活性参数在TG小鼠中不受影响。这些结果表明,神经元中持续存在对脑结构,髓鞘和髓鞘维护的主要影响,但导致温和的行为变化。

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