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Automated analysis of filopodial length and spatially resolved protein concentration via adaptive shape tracking

机译:通过自适应形状追踪自动分析analysis的长度和空间分辨的蛋白质浓度

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摘要

Filopodia are dynamic, actin-rich structures that transiently form on a variety of cell types. To understand the underlying control mechanisms requires precise monitoring of localization and concentration of individual regulatory and structural proteins as filopodia elongate and subsequently retract. Although several methods exist that analyze changes in filopodial shape, a software solution to reliably correlate growth dynamics with spatially resolved protein concentration along the filopodium independent of bending, lateral shift, or tilting is missing. Here we introduce a novel approach based on the convex-hull algorithm for parallel analysis of growth dynamics and relative spatiotemporal protein concentration along flexible filopodial protrusions. Detailed in silico tests using various geometries confirm that our technique accurately tracks growth dynamics and relative protein concentration along the filopodial length for a broad range of signal distributions. To validate our technique in living cells, we measure filopodial dynamics and quantify spatiotemporal localization of filopodia-associated proteins during the filopodial extension–retraction cycle in a variety of cell types in vitro and in vivo. Together these results show that the technique is suitable for simultaneous analysis of growth dynamics and spatiotemporal protein enrichment along filopodia. To allow readily application by other laboratories, we share source code and instructions for software handling.
机译:丝足虫是动态的,富含肌动蛋白的结构,可在多种细胞类型上瞬时形成。要了解潜在的控制机制,需要精确监控各个调节蛋白和结构蛋白在丝状伪足伸长和随后缩回时的定位和浓度。尽管存在几种分析丝虫形状变化的方法,但是缺少一种软件解决方案来可靠地将生长动力学与沿着纤毛虫在空间上分辨的蛋白质浓度相关联,而与弯曲,侧向移动或倾斜无关。在这里,我们介绍了一种基于凸包算法的新方法,用于并行分析沿柔性丝足突起的生长动力学和相对时空蛋白浓度。使用各种几何形状进行的详细计算机模拟测试证实,我们的技术可以精确地跟踪沿动态范围的增长动态和相对蛋白质浓度,从而获得广泛的信号分布。为了验证我们在活细胞中的技术,我们在体外和体内多种细胞类型的丝虫伸展-缩回周期中,测量了丝虫的动力学并定量了丝虫相关蛋白的时空定位。这些结果共同表明,该技术适用于同时分析丝状伪足的生长动力学和时空蛋白质富集。为了便于其他实验室的应用,我们共享软件处理的源代码和说明。

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