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Soulat, D.

Publications and source records attributed to Soulat, D..

2 recordsLinked to original sources

A genome-wide CRISPR functional survey of the human phagocytosis molecular machinery

Phagocytosis, the process of engulfing large particles by cells, is a multilayered biological activity driving tissue clearance and host defense. Dysregulation of phagocytosis is connected to autoimmunity, accumulation of toxic disease proteins, and increased risks for infections. Despite its importance and multiple roles, we lack a full understanding of the cellular machinery involved in executing and regulating the process, including the coordination with other cellular events. To create a functional map in human cells, we performed a reporter- and FACS-based genome-wide CRISPR/Cas9 knock-out screen that identified 716 genes. Mapping the gene hits to a comprehensive protein-protein interaction network annotated for functional cellular processes, allowed to highlight those protein complexes identified multiple times, to identify missing components of the cellular phagocytosis network, and to suggest functional partition among complexes. We validate complexes known to be involved, such as the Arp2/3 complex, the vacuolar-ATPase-Rag machinery, and the Wave-2 complex, as well as processes previously not or only poorly associated with phagocytosis. Among the novel, phagocytosis-relevant cellular functions validated are the oligosaccharyltransferase complex (MAGT1/SLC58A1, DDOST, STT3B, and RPN2) as well as the hypusine pathway (eIF5A, DHPS, and DOHH). Overall, our network of phagocytosis regulators and effectors maps elements of cargo uptake, cargo shuffling and cargo biotransformation through the cell, providing a valuable resource for the identification of potential novel drivers for diseases of the endo-lysosomal system. We further propose that our approach of mining and integrating publicly available protein-protein interaction data with datasets derived from reporter-based genome-wide screens offers a broadly applicable way to functionally map biological processes onto the molecular machinery of the cell. Summary blurbThe validation and interpretation of a FACS reporter-based genome-wide CRISPR/Cas9 knock-out screen through protein-protein interaction data yields a comprehensive view of the molecular network regulating and executing phagocytosis in human cells.

genomics↗

Precision size and refractive index analysis of weakly scattering nanoparticles in polydispersions.

Characterization of the size and material properties of particles in liquid suspensions is in very high demand, e.g., for the analysis of colloidal samples or of bodily fluids such as urine or blood plasma. However, the existing methods are limited in deciphering the constituents of realistic samples. Here, we introduce iNTA as a new method, which combines interferometric detection of scattering with nanoparticle tracking analysis, to reach an unprecedented sensitivity and precision in determining the size and refractive index distributions of nanoparticles in suspensions. After benchmarking iNTA with samples of colloidal gold, we present its remarkable ability to resolve the constituents of various multi-component and polydisperse samples of known origin. Furthermore, we showcase the method by elucidating the refractive index and size distributions of extracellular vesicles from Leishmania parasites and nanoparticles in human urine. The current performance of iNTA already enables advances in several important applications, but we also discuss possible improvements.

biophysics↗