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聚赖氨酸珠或纯化吞噬体诱导的肌动蛋白组装:通过新型流式细胞术检测进行定量分析

Actin assembly induced by polylysine beads or purified phagosomes: quantitation by a new flow cytometry assay.

作者信息

Defacque H, Egeberg M, Antzberger A, Ansorge W, Way M, Griffiths G

机构信息

European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

Cytometry. 2000 Sep 1;41(1):46-54.

Abstract

BACKGROUND

Actin assembly on biological membranes is a poorly understood process. We have previously shown that phagosomal membranes could induce actin assembly in the presence of thymosin beta4 (an actin sequestering protein that inhibits nonspecific nucleation), via the barbed ends of actin filaments.

METHODS

Here, we have developed an in vitro system based on fluorescein-labeled G (monomeric) actin and flow cytometry analysis, which allowed us to quantify de novo actin assembly on the cytoplasmic side of purified phagosomes. To standardize the system, we also used latex beads covalently coupled with polylysine, which efficiently promote actin nucleation.

RESULTS

Flow cytometry analysis showed that the percentage of polylysine beads positive for F-actin filaments increased in a time- and G-actin concentration-dependent manner. Incubation of phagosomes with reagents affecting actin dynamics allowed us to extend our previous data showing that the phagosomal membranes assemble actin filaments de novo. Finally, our results pin-point a potential role for gelsolin as a positive regulator of actin assembly on the phagosomal membrane.

CONCLUSIONS

We propose that our system could facilitate the development of other in vitro assays for the analysis of actin assembly and its links to signaling in cells.

摘要

背景

肌动蛋白在生物膜上的组装是一个尚未被充分理解的过程。我们之前已经表明,吞噬体膜在胸腺素β4(一种抑制非特异性成核的肌动蛋白隔离蛋白)存在的情况下,能够通过肌动蛋白丝的带刺末端诱导肌动蛋白组装。

方法

在这里,我们基于荧光素标记的G(单体)肌动蛋白和流式细胞术分析开发了一种体外系统,该系统使我们能够量化纯化吞噬体胞质侧的肌动蛋白从头组装。为了使系统标准化,我们还使用了与聚赖氨酸共价偶联的乳胶珠,其能有效促进肌动蛋白成核。

结果

流式细胞术分析表明,F-肌动蛋白丝呈阳性的聚赖氨酸珠的百分比以时间和G-肌动蛋白浓度依赖性方式增加。用影响肌动蛋白动力学的试剂孵育吞噬体使我们能够扩展我们之前的数据,表明吞噬体膜能从头组装肌动蛋白丝。最后,我们的结果确定凝溶胶蛋白作为吞噬体膜上肌动蛋白组装的正调节剂的潜在作用。

结论

我们提出我们的系统可以促进其他体外分析方法的开发,用于分析肌动蛋白组装及其与细胞信号传导的联系。

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