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数量和亮度图像分析揭示了 ATF 在细胞膜中诱导 uPAR 的二聚化动力学。

Number and brightness image analysis reveals ATF-induced dimerization kinetics of uPAR in the cell membrane.

机构信息

Microscopy and Dynamic Imaging Unit, National Center for Cardiovascular Research (CNIC), Madrid, Spain.

出版信息

FASEB J. 2011 Sep;25(9):2883-97. doi: 10.1096/fj.11-181537. Epub 2011 May 20.

Abstract

We studied the molecular forms of the GPI-anchored urokinase plasminogen activator receptor (uPAR-mEGFP) in the human embryo kidney (HEK293) cell membrane and demonstrated that the binding of the amino-terminal fragment (ATF) of urokinase plasminogen activator is sufficient to induce the dimerization of the receptor. We followed the association kinetics and determined precisely the dimeric stoichiometry of uPAR-mEGFP complexes by applying number and brightness (N&B) image analysis. N&B is a novel fluctuation-based approach for measuring the molecular brightness of fluorophores in an image time sequence in live cells. Because N&B is very sensitive to long-term temporal fluctuations and photobleaching, we have introduced a filtering protocol that corrects for these important sources of error. Critical experimental parameters in N&B analysis are illustrated and analyzed by simulation studies. Control experiments are based on mEGFP-GPI, mEGFP-mEGFP-GPI, and mCherry-GPI, expressed in HEK293. This work provides a first direct demonstration of the dimerization of uPAR in live cells. We also provide the first methodological guide on N&B to discern minor changes in molecular composition such as those due to dimerization events, which are involved in fundamental cell signaling mechanisms.

摘要

我们研究了人胚肾(HEK293)细胞膜中糖基磷脂酰肌醇(GPI)锚定尿激酶型纤溶酶原激活物受体(uPAR-mEGFP)的分子形式,并证明尿激酶纤溶酶原激活物的氨基末端片段(ATF)的结合足以诱导受体的二聚化。我们跟踪了结合动力学,并通过应用数量和亮度(N&B)图像分析精确确定了 uPAR-mEGFP 复合物的二聚体化学计量。N&B 是一种用于在活细胞的图像时间序列中测量荧光团分子亮度的新型基于波动的方法。由于 N&B 对长期时间波动和光漂白非常敏感,因此我们引入了一种过滤方案,可纠正这些重要的误差源。通过模拟研究对 N&B 分析中的关键实验参数进行了说明和分析。对照实验基于在 HEK293 中表达的 mEGFP-GPI、mEGFP-mEGFP-GPI 和 mCherry-GPI。这项工作首次直接证明了 uPAR 在活细胞中的二聚化。我们还提供了关于 N&B 的第一个方法指南,以区分分子组成的微小变化,例如由于涉及基本细胞信号转导机制的二聚化事件引起的变化。

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