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Updated: May 4, 2026

Spatial Separation of Molecular Conformers and Clusters
Published on: January 9, 2014
Analysis of the spatial organization of molecules with robust statistics
Thibault Lagache1, Gabriel Lang2, Nathalie Sauvonnet3
1Unité d'Analyse d'Images Quantitative, Institut Pasteur, Paris, France ; Unité de Recherche Associée 2582, Centre National de la Recherche Scientifique, Paris, France.
Abstract:
One major question in molecular biology is whether the spatial distribution of observed molecules is random or organized in clusters. Indeed, this analysis gives information about molecules' interactions and physical interplay with their environment. The standard tool for analyzing molecules' distribution statistically is the Ripley's K function, which tests spatial randomness through the computation of its critical quantiles. However, quantiles' computation is very cumbersome, hindering its use. Here, we present an analytical expression of these quantiles, leading to a fast and robust statistical test, and we derive the characteristic clusters' size from the maxima of the Ripley's K function. Subsequently, we analyze the spatial organization of endocytic spots at the cell membrane and we report that clathrin spots are randomly distributed while clathrin-independent spots are organized in clusters with a radius of 2 μm, which suggests distinct physical mechanisms and cellular functions for each pathway.
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