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首页> 外文期刊>BMC Bioinformatics >An extended model of vesicle fusion at the plasma membrane to estimate protein lateral diffusion from TIRF microscopy images
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An extended model of vesicle fusion at the plasma membrane to estimate protein lateral diffusion from TIRF microscopy images

机译:血浆膜囊泡融合的扩展模型,以估算TIRF显微镜图像的蛋白质横向扩散

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Background Characterizing membrane dynamics is a key issue to understand cell exchanges with the extra-cellular medium. Total internal reflection fluorescence microscopy (TIRFM) is well suited to focus on the late steps of exocytosis at the plasma membrane. However, it is still a challenging task to quantify (lateral) diffusion and estimate local dynamics of proteins. Results A new model was introduced to represent the behavior of cargo transmembrane proteins during the vesicle fusion to the plasma membrane at the end of the exocytosis process. Two biophysical parameters, the diffusion coefficient and the release rate parameter, are automatically estimated from TIRFM image sequences, to account for both the lateral diffusion of molecules at the membrane and the continuous release of the proteins from the vesicle to the plasma membrane. Quantitative evaluation on 300 realistic computer-generated image sequences demonstrated the efficiency and accuracy of the method. The application of our method on 16 real TIRFM image sequences additionally revealed differences in the dynamic behavior of Transferrin Receptor (TfR) and Langerin proteins. Conclusion An automated method has been designed to simultaneously estimate the diffusion coefficient and the release rate for each individual vesicle fusion event at the plasma membrane in TIRFM image sequences. It can be exploited for further deciphering cell membrane dynamics.
机译:背景技术表征膜动力学是理解细胞交换与细胞介质的关键问题。全内反射荧光显微镜(TiRFM)非常适合于专注于血浆膜在卵尿的晚期步骤。然而,量化(横向)扩散和估计蛋白质的局部动态仍然是一个具有挑战性的任务。结果介绍了一种新模型,以代表在外吐胞增生过程结束时囊泡融合过程中囊泡融合过程中的货物跨膜蛋白的行为。从TiRFM图像序列自动估计两种生物物理参数,扩散系数和释放率参数,以考虑膜中分子的横向扩散和蛋白质从囊泡的连续释放到质膜。 300现实计算机生成的图像序列的定量评估证明了该方法的效率和准确性。我们在16个真实TiRFM图像序列上的应用另外揭示了转运素受体(TFR)和兰花蛋白蛋白的动态行为的差异。结论,自动化方法设计用于在TIRFM图像序列中同时估计血浆膜上的各自囊泡融合事件的扩散系数和释放速率。可以利用进一步解密细胞膜动力学。

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