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Autoinhibition of the formin Cappuccino in the absence of canonical autoinhibitory domains

机译:在不存在规范性自动抑制域的情况下对Formin卡布奇诺咖啡的自动抑制

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摘要

Formins are a conserved family of proteins known to enhance actin polymerization. Most formins are regulated by an intramolecular interaction. The Drosophila formin, Cappuccino (Capu), was believed to be an exception. Capu does not contain conserved autoinhibitory domains and can be regulated by a second protein, Spire. We report here that Capu is, in fact, autoinhibited. The N-terminal half of Capu (Capu-NT) potently inhibits nucleation and binding to the barbed end of elongating filaments by the C-terminal half of Capu (Capu-CT). Hydrodynamic analysis indicates that Capu-NT is a dimer, similar to the N-termini of other formins. These data, combined with those from circular dichroism, suggest, however, that it is structurally distinct from previously described formin inhibitory domains. Finally, we find that Capu-NT binds to a site within Capu-CT that overlaps with the Spire-binding site, the Capu-tail. We propose models for the interaction between Spire and Capu in light of the fact that Capu can be regulated by autoinhibition.
机译:福尔马林是已知的增强肌动蛋白聚合的保守蛋白家族。大多数formins受分子内相互作用调节。果蝇甲卡布奇诺(Capu)被认为是一个例外。 Capu不包含保守的自抑制域,可以由第二种蛋白Spire调节。我们在此报告Capu实际上是自动禁止的。 Capu(Capu-NT)的N端一半通过Capu(Capu-CT)的C端一半有效抑制成核并与伸长丝的倒刺端结合。流体力学分析表明Capu-NT是一个二聚体,类似于其他formins的N-末端。但是,这些数据与圆二色性的数据相结合,表明它在结构上不同于先前描述的FORMIN抑制域。最后,我们发现Capu-NT与Capu-CT内的一个位点结合,该位点与Spire结合位点Capu-tail重叠。考虑到Capu可以通过自动抑制来调节,我们提出了Spire和Capu之间相互作用的模型。

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