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Dynamic force-induced direct dissociation of protein complexes in a nuclear body in living cells

机译:动态力诱导活细胞核体内蛋白质复合物的直接解离

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Despite past progress in understanding mechanisms of cellular mechanotransduction, it is unclear whether a local surface force can directly alter nuclear functions without intermediate biochemical cascades. Here we show that a local dynamic force via integrins results in direct displacements of coilin and SMN proteins in Cajal bodies and direct dissociation of coilin-SMN associated complexes. Spontaneous movements of coilin increase more than those of SMN in the same Cajal body after dynamic force application. Fluorescence resonance energy transfer changes of coilin-SMN depend on force magnitude, an intact F-actin, cytoskeletal tension, Lamin A/C, or substrate rigidity. Other protein pairs in Cajal bodies exhibit different magnitudes of fluorescence resonance energy transfer. Dynamic cyclic force induces tiny phase lags between various protein pairs in Cajal bodies, suggesting viscoelastic interactions between them. These findings demonstrate that dynamic force-induced direct structural changes of protein complexes in Cajal bodies may represent a unique mechanism of mechanotransduction that impacts on nuclear functions involved in gene expression.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:尽管过去在了解细胞机械转导的机理方面取得了进展,但尚不清楚局部表面力是否可以直接改变核功能而无需中间生化级联反应。在这里,我们显示通过整联蛋白的局部动力导致卷积蛋白和SMN蛋白在Cajal体中的直接移位和卷积蛋白-SMN相关复合物的直接解离。施加动力后,在同一Cajal体中,colin的自发运动比SMN的运动增加更多。卷材-SMN的荧光共振能量转移变化取决于作用力大小​​,完整的F-肌动蛋白,细胞骨架张力,Lamin A / C或底物刚性。卡哈尔体中的其他蛋白质对表现出不同程度的荧光共振能量转移。动态循环力在Cajal体内的各种蛋白质对之间引起微小的相位滞后,表明它们之间存在粘弹性相互作用。这些发现表明,动态力诱导的Cajal体内蛋白质复合物的直接结构变化可能代表了机械转导的独特机制,该机制影响基因表达中涉及的核功能。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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