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Purification of infection-associated macropinosomes by magnetic isolation for proteomic characterization.
Stévenin, Virginie; Giai Gianetto, Quentin; Duchateau, Magalie; Matondo, Mariette; Enninga, Jost; Chang, Yuen-Yan.
Afiliación
  • Stévenin V; Institut Pasteur, Dynamics of Host-Pathogen Interactions Unit and CNRS UMR 3691, Paris, France. virginie.stevenin@ens-cachan.fr.
  • Giai Gianetto Q; Department of Cell and Chemical Biology, Leiden University Medical Center, Leiden, the Netherlands. virginie.stevenin@ens-cachan.fr.
  • Duchateau M; Université de Paris, Ecole Doctorale BioSPC, Paris, France. virginie.stevenin@ens-cachan.fr.
  • Matondo M; Proteomics Platform, Mass Spectrometry for Biology Unit, Institut Pasteur, USR 2000 CNRS, Paris, France.
  • Enninga J; Hub Bioinformatics et Biostatistics, Computational Biology Department, USR CNRS, Institut Pasteur, Paris, France.
  • Chang YY; Proteomics Platform, Mass Spectrometry for Biology Unit, Institut Pasteur, USR 2000 CNRS, Paris, France.
Nat Protoc ; 16(11): 5220-5249, 2021 11.
Article en En | MEDLINE | ID: mdl-34697468
ABSTRACT
Macropinocytosis refers to the nonselective uptake of extracellular molecules into many different types of eukaryotic cells within large fluid-filled vesicles named macropinosomes. Macropinosomes are relevant for a wide variety of cellular processes, such as antigen sampling in immune cells, homeostasis in the kidney, cell migration or pathogen uptake. Understanding the molecular composition of the different macropinosomes formed during these processes has helped to differentiate their regulations from other endocytic events. Here, we present a magnetic purification protocol that segregates scarce macropinosomes from other endocytic vesicles at a high purity and in a low-cost and unbiased manner. Our protocol takes advantage of moderate-sized magnetic beads of 100 nm in diameter coupled to mass-spectrometry-based proteomic analysis. Passing the cell lysate through a table-top magnet allows the quick retention of the bead-containing macropinosomes. Unlike other cell-fractionation-based methodologies, our protocol minimizes sample loss and production cost without prerequisite knowledge of the macropinosomes and with minimal laboratory experience. We describe a detailed procedure for the isolation of infection-associated macropinosomes during bacterial invasion and the optimization steps to readily adapt it to various studies. The protocol can be performed in 3 d to provide highly purified and enriched macropinosomes for qualitative proteomic composition analysis.
Asunto(s)

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Proteómica / Fenómenos Magnéticos Tipo de estudio: Qualitative_research / Risk_factors_studies Idioma: En Revista: Nat Protoc Año: 2021 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Proteómica / Fenómenos Magnéticos Tipo de estudio: Qualitative_research / Risk_factors_studies Idioma: En Revista: Nat Protoc Año: 2021 Tipo del documento: Article