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Abi1 在胚胎存活和 WAVE2 复合物完整性中起关键作用。

Essential role for Abi1 in embryonic survival and WAVE2 complex integrity.

机构信息

Laboratory of Cell Signaling, New York Blood Center, New York, NY 10065, USA.

出版信息

Proc Natl Acad Sci U S A. 2011 Apr 26;108(17):7022-7. doi: 10.1073/pnas.1016811108. Epub 2011 Apr 11.

Abstract

Abl interactor 1 (Abi1) plays a critical function in actin cytoskeleton dynamics through participation in the WAVE2 complex. To gain a better understanding of the specific role of Abi1, we generated a conditional Abi1-KO mouse model and MEFs lacking Abi1 expression. Abi1-KO cells displayed defective regulation of the actin cytoskeleton, and this dysregulation was ascribed to altered activity of the WAVE2 complex. Changes in motility of Abi1-KO cells were manifested by a decreased migration rate and distance but increased directional persistence. Although these phenotypes did not correlate with peripheral ruffling, which was unaffected, Abi1-KO cells exhibited decreased dorsal ruffling. Western blotting analysis of Abi1-KO cell lysates indicated reduced levels of the WAVE complex components WAVE1 and WAVE2, Nap1, and Sra-1/PIR121. Although relative Abi2 levels were more than doubled in Abi1-KO cells, the absolute Abi2 expression in these cells amounted only to a fifth of Abi1 levels in the control cell line. This finding suggests that the presence of Abi1 is critical for the integrity and stability of WAVE complex and that Abi2 levels are not sufficiently increased to compensate fully for the loss of Abi1 in KO cells and to restore the integrity and function of the WAVE complex. The essential function of Abi1 in WAVE complexes and their regulation might explain the observed embryonic lethality of Abi1-deficient embryos, which survived until approximately embryonic day 11.5 and displayed malformations in the developing heart and brain. Cells lacking Abi1 and the conditional Abi1-KO mouse will serve as critical models for defining Abi1 function.

摘要

Abl 相互作用蛋白 1(Abi1)通过参与 WAVE2 复合物在肌动蛋白细胞骨架动力学中发挥关键作用。为了更好地了解 Abi1 的特定作用,我们生成了条件性 Abi1-KO 小鼠模型和缺乏 Abi1 表达的 MEFs。Abi1-KO 细胞显示出肌动蛋白细胞骨架调节缺陷,这种失调归因于 WAVE2 复合物活性的改变。Abi1-KO 细胞运动性的变化表现为迁移率和距离降低,但方向持久性增加。尽管这些表型与不受影响的周边皱襞无关,但 Abi1-KO 细胞表现出背侧皱襞减少。Abi1-KO 细胞裂解物的 Western blot 分析表明,WAVE 复合物成分 WAVE1 和 WAVE2、Nap1 和 Sra-1/PIR121 的水平降低。尽管 Abi1-KO 细胞中的相对 Abi2 水平增加了两倍多,但这些细胞中的绝对 Abi2 表达仅为对照细胞系中 Abi1 水平的五分之一。这一发现表明,Abi1 的存在对于 WAVE 复合物的完整性和稳定性至关重要,并且 Abi2 水平不足以完全代偿 Abi1 的缺失,以恢复 WAVE 复合物的完整性和功能。Abi1 在 WAVE 复合物及其调节中的重要功能可能解释了 Abi1 缺陷胚胎观察到的胚胎致死性,这些胚胎存活至大约胚胎第 11.5 天,并显示出发育中心脏和大脑的畸形。缺乏 Abi1 和条件性 Abi1-KO 小鼠的细胞将作为定义 Abi1 功能的关键模型。

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