Culture conditions greatly impact the levels of vesicular and extravesicular Ago2 and RNA in extracellular vesicle preparations

Author:

Jimenez Lizandra12,Barman Bahnisikha12,Jung Youn Jae123,Cocozza Lauren12,Krystofiak Evan4,Saffold Cherie5,Vickers Kasey C.26,Wilson John T.23,Dawson T. Renee12,Weaver Alissa M.125

Affiliation:

1. Department of Cell and Developmental Biology Vanderbilt University School of Medicine Nashville Tennessee USA

2. Center for Extracellular Vesicle Research Vanderbilt University School of Medicine Nashville Tennessee USA

3. Department of Chemical and Biomolecular Engineering Vanderbilt University School of Engineering Nashville Tennessee USA

4. Cell Imaging Shared Resource EM Facility Vanderbilt University Nashville Tennessee USA

5. Department of Pathology, Microbiology and Immunology Vanderbilt University Medical Center Nashville Tennessee USA

6. Department of Medicine Vanderbilt University Medical Center Nashville Tennessee USA

Abstract

AbstractExtracellular vesicle (EV)‐carried miRNAs can influence gene expression and functional phenotypes in recipient cells. Argonaute 2 (Ago2) is a key miRNA‐binding protein that has been identified in EVs and could influence RNA silencing. However, Ago2 is in a non‐vesicular form in serum and can be an EV contaminant. In addition, RNA‐binding proteins (RBPs), including Ago2, and RNAs are often minor EV components whose sorting into EVs may be regulated by cell signaling state. To determine the conditions that influence detection of RBPs and RNAs in EVs, we evaluated the effect of growth factors, oncogene signaling, serum, and cell density on the vesicular and nonvesicular content of Ago2, other RBPs, and RNA in small EV (SEV) preparations. Media components affected both the intravesicular and extravesicular levels of RBPs and miRNAs in EVs, with serum contributing strongly to extravesicular miRNA contamination. Furthermore, isolation of EVs from hollow fiber bioreactors revealed complex preparations, with multiple EV‐containing peaks and a large amount of extravesicular Ago2/RBPs. Finally, KRAS mutation impacts the detection of intra‐ and extra‐vesicular Ago2. These data indicate that multiple cell culture conditions and cell states impact the presence of RBPs in EV preparations, some of which can be attributed to serum contamination.

Funder

National Institutes of Health

National Science Foundation

Publisher

Wiley

Subject

Cell Biology,Histology

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