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在无钙条件下,仅低 pH 值如何能单独诱导凝胶蛋白具有肌动蛋白切割能力的直观理解。

Visual insight into how low pH alone can induce actin-severing ability in gelsolin under calcium-free conditions.

机构信息

Renal, Electrolyte and Hypertension Division, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Biol Chem. 2011 Jun 10;286(23):20387-97. doi: 10.1074/jbc.M111.236943. Epub 2011 Apr 15.

Abstract

Gelsolin is a key actin cytoskeleton-modulating protein primarily regulated by calcium and phosphoinositides. In addition, low pH has also been suggested to activate gelsolin in the absence of Ca(2+) ions, although no structural insight on this pathway is available except for a reported decrement in its diffusion coefficient at low pH. We also observed ~1.6-fold decrease in the molecular mobility of recombinant gelsolin when buffer pH was lowered from 9 to 5. Analysis of the small angle x-ray scattering data collected over the same pH range indicated that the radius of gyration and maximum linear dimension of gelsolin molecules increased from 30.3 to 34.1 Å and from 100 to 125 Å, respectively. Models generated for each dataset indicated that similar to the Ca(2+)-induced process, low pH also promotes unwinding of this six-domain protein but only partially. It appeared that pH is able to induce extension of the G1 domain from the rest of the five domains, whereas the Ca(2+)-sensitive latch between G2 and G6 domains remains closed. Interestingly, increasing the free Ca(2+) level to merely ~40 nM, the partially open pH 5 shape "sprung open" to a shape seen earlier for this protein at pH 8 and 1 mm free Ca(2+). Also, pH alone could induce a shape where the g3-g4 linker of gelsolin was open when we truncated the C-tail latch from this protein. Our results provide insight into how under physiological conditions, a drop in pH can fully activate the F-actin-severing shape of gelsolin with micromolar levels of Ca(2+) available.

摘要

凝胶蛋白是一种主要受钙离子和磷酸肌醇调节的关键肌动蛋白细胞骨架调节蛋白。此外,尽管除了报道的在低 pH 值时其扩散系数降低之外,尚无关于该途径的结构见解,但已经提出低 pH 值可以在没有 Ca(2+)离子的情况下激活凝胶蛋白。我们还观察到,当缓冲液 pH 值从 9 降低到 5 时,重组凝胶蛋白的分子迁移率降低了约 1.6 倍。对在相同 pH 范围内收集的小角度 X 射线散射数据的分析表明,凝胶蛋白分子的回转半径和最大线性尺寸分别从 30.3 增加到 34.1 Å和从 100 增加到 125 Å。为每个数据集生成的模型表明,与 Ca(2+)诱导的过程类似,低 pH 值也促进了该六结构域蛋白的解旋,但只是部分解旋。似乎 pH 值能够诱导 G1 结构域从其余五个结构域中伸展出来,而 G2 和 G6 结构域之间的 Ca(2+)敏感闩锁仍然关闭。有趣的是,将游离 Ca(2+)水平提高到仅约 40 nM,部分打开的 pH 5 形状“突然打开”为在 pH 8 和 1 mM 游离 Ca(2+)下该蛋白的早期形状。此外,当我们从该蛋白中截断 C 端闩锁时,单独的 pH 值就可以诱导凝胶蛋白 g3-g4 接头打开的形状。我们的结果提供了一些见解,即在生理条件下,pH 值的下降可以在存在微摩尔水平的 Ca(2+)的情况下完全激活凝胶蛋白的 F-肌动蛋白切割形状。

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