Behind the scenes of cellular organization: Quantifying spatial phenotypes of puncta structures with statistical models including random fields

Publication date

2025-03-01

Authors

Nicolaou, KyriacosISNI 0000000524274572
Passmore, Josiah B.ISNI 0000000507287320
Kapitein, Lukas C.ISNI 0000000389218112
Mulder, BelaISNI 000000038818909X
Berger, FlorianISNI 0000000506322008

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

The cellular interior is a spatially complex environment shaped by nontrivial stochastic and biophysical processes. Within this complexity, spatial organizational principles—also called spatial phenotypes—often emerge with functional implications. However, identifying and quantifying these phenotypes in the stochastic intracellular environment is challenging. To overcome this challenge for puncta, we discuss the use of inference of point-process models that link the density of points to other imaged structures and a random field that captures hidden processes. We apply these methods to simulated data and multiplexed immunofluorescence images of Vero E6 cells. Our analysis suggests that peroxisomes are likely to be found near the perinuclear region, overlapping with the endoplasmic reticulum, and located within a distance of 1 μm to mitochondria. Moreover, the random field captures a hidden variation of the mean density in the order of 15 μm. This length scale could provide critical information for further developing mechanistic hypotheses and models. By using spatial statistical models including random fields, we add a valuable perspective to cell biology.

Keywords

Molecular Biology, Cell Biology

Citation

Nicolaou, K, Passmore, J B, Kapitein, L C, Mulder, B M & Berger, F 2025, 'Behind the scenes of cellular organization : Quantifying spatial phenotypes of puncta structures with statistical models including random fields', Molecular Biology of the Cell, vol. 36, no. 3, ar22. https://doi.org/10.1091/mbc.E24-10-0461