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TAGLN2 polymerizes G-actin in a low ionic state but blocks Arp2/3-nucleated actin branching in physiological conditions

机译:TAGLN2在低离子状态下聚合G-肌动蛋白但在生理条件下阻止Arp2 / 3-有核肌动蛋白分支

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摘要

TAGLN is an actin-binding protein family that comprises three isoforms with theorized roles in smooth muscle differentiation, tumour development, lymphocyte activation, and brain chemistry. However, their fundamental characteristics in regulation of the actin-based cytoskeleton are not fully understood. Here we show that TAGLN2 (including TAGLN1 and TAGLN3) extensively nucleates G-actin polymerization under low-salt conditions, where polymerization would be completely suppressed. The calponin homology domain and actin-binding loop are essential to mechanically connect two adjacent G-actins, thereby mediating multimeric interactions. However, TAGLN2 blocked the Arp2/3 complex binding to actin filaments under physiological salt conditions, thereby inhibiting branched actin nucleation. In HeLa and T cells, TAGLN2 enhanced filopodium-like membrane protrusion. Collectively, the dual functional nature of TAGLN2—G-actin polymerization and Arp2/3 complex inhibition—may account for the mechanisms of filopodia development at the edge of Arp2/3-rich lamellipodia in various cell types.
机译:TAGLN是一种肌动蛋白结合蛋白家族,包含三个同工型,在平滑肌分化,肿瘤发展,淋巴细胞活化和脑化学方面具有理论上的作用。但是,它们在调节基于肌动蛋白的细胞骨架中的基本特征尚不完全清楚。在这里,我们显示TAGLN2(包括TAGLN1和TAGLN3)在低盐条件下广泛地使G-肌动蛋白聚合成核,从而可以完全抑制聚合。钙蛋白的同源结构域和肌动蛋白结合环对于机械连接两个相邻的G-肌动蛋白至关重要,从而介导多聚体相互作用。但是,TAGLN2在生理盐条件下阻断了Arp2 / 3复合物与肌动蛋白丝的结合,从而抑制了分支肌动蛋白的成核作用。在HeLa和T细胞中,TAGLN2增强了丝状类似膜的突出。总的来说,TAGLN2的双重功能性质-G-肌动蛋白聚合和Arp2 / 3复合物抑制-可能解释了在各种细胞类型中富含Arp2 / 3的片状脂质体边缘的丝状伪足发展的机制。

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