【2h】

A conventional myosin motor drives neurite outgrowth

机译:常规的肌球蛋白马达驱动神经突生长

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摘要

Neuritic outgrowth is a striking example of directed motility, powered through the actions of molecular motors. Members of the myosin superfamily of actin-associated motors have been implicated in this complex process. Although conventional myosin II is known to be present in neurons, where it is localized at the leading edge of growth cones and in the cell cortex close to the plasma membrane, its functional involvement in growth cone motility has remained unproven. Here, we show that antisense oligodeoxyribonucleotides, complementary to a specific isoform of conventional myosin (myosin IIB), attenuate filopodial extension whereas sense and scrambled control oligodeoxyribonucleotides have no effect. Attenuation is shown to be reversible, neurite outgrowth being restored after cessation of the antisense regimen. Myosin IIB mRNA was present during active neurite extension, but levels were minimal in phenotypically rounded cells before neurite outgrowth and message levels decreased during antisense treatment. By contrast, the myosin IIA isoform is shown to be expressed constitutively both before and during neurite outgrowth and throughout exposure to myosin IIB antisense oligodeoxyribonucleotides. These results provide direct evidence that a conventional two-headed myosin is required for growth cone motility and is responsible, at least in part, for driving neuritic process outgrowth.
机译:神经生长是分子运动的动力驱动的定向运动的一个明显例子。肌动蛋白相关马达的肌球蛋白超家族成员已经牵涉到这个复杂的过程。尽管已知常规的肌球蛋白II存在于神经元中,它位于生长锥的前缘和质膜附近的细胞皮质中,但其功能参与生长锥运动性的问题尚未得到证实。在这里,我们显示,与常规肌球蛋白(肌球蛋白IIB)的特定同工型互补的反义寡聚脱氧核糖核苷酸减弱了丝虫的延伸,而有义和混乱的对照寡聚脱氧核糖核苷酸则没有作用。衰减显示为可逆的,神经突增生在反义方案停止后得以恢复。肌球蛋白IIB mRNA在活跃的神经突延伸过程中存在,但在神经突向外生长之前,表型圆形细胞中的水平最低,反义治疗期间信息水平降低。相反,显示出肌球蛋白IIA同工型在神经突生长之前和期间以及在暴露于肌球蛋白IIB反义寡脱氧核糖核苷酸的整个过程中组成性表达。这些结果提供了直接的证据,表明常规的两头肌球蛋白是生长锥运动所必需的,并且至少部分地导致了神经过程的生长。

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