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Neuronal drebrin A directly interacts with mDia2 formin to inhibit actin assembly

机译:神经元DrebrinA直接与mDia2 formin相互作用以抑制肌动蛋白组装

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摘要

Dendritic spines (DS) are actin-rich postsynaptic terminals of neurons that are critical for higher-order brain functions. Maturation of DS is accompanied by a change in actin architecture from linear to branched filamentous structures. Presumably, the underlying cause of this is a switch in a mode of actin assembly from formin-driven to Arp2/3-mediated via an undefined mechanism. Here we present data suggesting that neuron-specific actin-binding drebrin A may be a part of such a switch. It is well documented that DS are highly enriched in drebrin A, which is critical for their plasticity and function. At the same time, mDia2 is known to mediate the formation of filopodia-type (immature) spines. We found that neuronal drebrin A directly interacts with mDia2 formin. Drebrin inhibits formin-mediated nucleation of actin and abolishes mDia2-induced actin bundling. Using truncated protein constructs we identified the domain requirements for drebrin–mDia2 interaction. We hypothesize that accumulation of drebrin A in DS (that coincides with spine maturation) leads to inhibition of mDia2-driven actin polymerization and, therefore, may contribute to a change in actin architecture from linear to branched filaments.
机译:树突棘(DS)是神经元的富含肌动蛋白的突触后末端,对高级大脑功能至关重要。 DS的成熟伴随着肌动蛋白结构从线性到分支丝状结构的变化。据推测,这的根本原因是肌动蛋白组装模式的转变,是通过一种不确定的机制从形式驱动的介导的介导的Amp2 / 3转换。在这里,我们提出的数据表明神经元特异的肌动蛋白结合DrebrinA可能是这种开关的一部分。有充分的文献证明,DS富含DrebrinA,这对它们的可塑性和功能至关重要。同时,已知mDia2介导丝状伪足型(未成熟)棘的形成。我们发现神经元的Drebrin A直接与mDia2甲酰胺相互作用。 Drebrin抑制formin介导的肌动蛋白成核,并废除mDia2诱导的肌动蛋白束。使用截短的蛋白质构建体,我们确定了drebrin–mDia2相互作用的域要求。我们假设,DS中drebrinA的积累(与脊柱的成熟相吻合)会导致mDia2驱动的肌动蛋白聚合反应受到抑制,因此,可能导致肌动蛋白结构从线性到分支的细丝发生变化。

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