Fetal Bovine Serum RNA Interferes with the Cell Culture derived Extracellular RNA

被引:116
作者
Wei, Zhiyun [1 ,2 ]
Batagov, Arsen O. [3 ]
Carter, David R. F. [4 ]
Krichevsky, Anna M. [1 ,2 ]
机构
[1] Brigham & Womens Hosp, Dept Neurol, Boston, MA 02115 USA
[2] Harvard Med Sch, Boston, MA 02115 USA
[3] Bioinformat Inst, Genome & Gene Express Data Anal Div, Singapore 138671, Singapore
[4] Oxford Brookes Univ, Fac Hlth & Life Sci, Dept Biol & Med Sci, Oxford OX3 0BP, England
关键词
EXPRESSION; MICRORNAS;
D O I
10.1038/srep31175
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
070301 [无机化学]; 070403 [天体物理学]; 070507 [自然资源与国土空间规划学]; 090105 [作物生产系统与生态工程];
摘要
Fetal bovine serum (FBS) has been used in eukaryotic cell cultures for decades. However, little attention has been paid to the biological effects associated with RNA content of FBS on cell cultures. Here, using RNA sequencing, we demonstrate that FBS contains a diverse repertoire of protein-coding and regulatory RNA species, including mRNA, miRNA, rRNA, and snoRNA. The majority of them (>70%) are retained even after extended ultracentrifugation in the preparations of vesicle-depleted FBS (vdFBS) commonly utilized in the studies of extracellular vesicles (EV) and intercellular communication. FBS-associated RNA is co-isolated with cell-culture derived extracellular RNA (exRNA) and interferes with the downstream RNA analysis. Many evolutionally conserved FBS-derived RNA species can be falsely annotated as human or mouse transcripts. Notably, specific miRNAs abundant in FBS, such as miR-122, miR-451a and miR-1246, have been previously reported as enriched in cell-culture derived EVs, possibly due to the confounding effect of the FBS. Analysis of publically available exRNA datasets supports the notion of FBS contamination. Furthermore, FBS transcripts can be taken up by cultured cells and affect the results of highly sensitive gene expression profiling technologies. Therefore, precautions for experimental design are warranted to minimize the interference and misinterpretations caused by FBS-derived RNA.
引用
收藏
页数:6
相关论文
共 21 条
[1]
Hypoxic signature of microRNAs in glioblastoma: insights from small RNA deep sequencing [J].
Agrawal, Rahul ;
Pandey, Priyatama ;
Jha, Prerana ;
Dwivedi, Vivek ;
Sarkar, Chitra ;
Kulshreshtha, Ritu .
BMC GENOMICS, 2014, 15
[2]
The influence of rotor type and centrifugation time on the yield and purity of extracellular vesicles [J].
Cvjetkovic, Aleksander ;
Lotvall, Jan ;
Lasser, Cecilia .
JOURNAL OF EXTRACELLULAR VESICLES, 2014, 3 (01)
[3]
Extracellular vesicle-depleted fetal bovine and human sera have reduced capacity to support cell growth [J].
Eitan, Erez ;
Zhang, Shi ;
Witwer, Kenneth W. ;
Mattson, Mark P. .
JOURNAL OF EXTRACELLULAR VESICLES, 2015, 4 :1-10
[4]
Selective extracellular vesicle-mediated export of an overlapping set of microRNAs from multiple cell types [J].
Guduric-Fuchs, Jasenka ;
O'Connor, Anna ;
Camp, Bailey ;
O'Neill, Christina L. ;
Medina, Reinhold J. ;
Simpson, David A. .
BMC GENOMICS, 2012, 13
[5]
Deep Sequencing of RNA from Three Different Extracellular Vesicle (EV) Subtypes Released from the Human LIM1863 Colon Cancer Cell Line Uncovers Distinct Mirna-Enrichment Signatures [J].
Ji, Hong ;
Chen, Maoshan ;
Greening, David W. ;
He, Weifeng ;
Rai, Alin ;
Zhang, Wenwei ;
Simpson, Richard J. .
PLOS ONE, 2014, 9 (10)
[6]
Nontemplated Nucleotide Additions Distinguish the Small RNA Composition in Cells from Exosomes [J].
Koppers-Lalic, Danijela ;
Hackenberg, Michael ;
Bijnsdorp, Irene V. ;
van Eijndhoven, Monique A. J. ;
Sadek, Payman ;
Sie, Daud ;
Zini, Nicoletta ;
Middeldorp, Jaap M. ;
Ylstra, Bauke ;
de Menezes, Renee X. ;
Wuerdinger, Thomas ;
Meijer, Gerrit A. ;
Pegtel, D. Michiel .
CELL REPORTS, 2014, 8 (06) :1649-1658
[7]
Small RNAs derived from tRNAs and rRNAs are highly enriched in exosomes from both old and new world Leishmania providing evidence for conserved exosomal RNA Packaging [J].
Lambertz, Ulrike ;
Ovando, Mariana E. Oviedo ;
Vasconcelos, Elton J. R. ;
Unrau, Peter J. ;
Myler, Peter J. ;
Reiner, Neil E. .
BMC GENOMICS, 2015, 16
[8]
A mammalian microRNA expression atlas based on small RNA library sequencing [J].
Landgraf, Pablo ;
Rusu, Mirabela ;
Sheridan, Robert ;
Sewer, Alain ;
Iovino, Nicola ;
Aravin, Alexei ;
Pfeffer, Sebastien ;
Rice, Amanda ;
Kamphorst, Alice O. ;
Landthaler, Markus ;
Lin, Carolina ;
Socci, Nicholas D. ;
Hermida, Leandro ;
Fulci, Valerio ;
Chiaretti, Sabina ;
Foa, Robin ;
Schliwka, Julia ;
Fuchs, Uta ;
Novosel, Astrid ;
Mueller, Roman-Ulrich ;
Schermer, Bernhard ;
Bissels, Ute ;
Inman, Jason ;
Phan, Quang ;
Chien, Minchen ;
Weir, David B. ;
Choksi, Ruchi ;
De Vita, Gabriella ;
Frezzetti, Daniela ;
Trompeter, Hans-Ingo ;
Hornung, Veit ;
Teng, Grace ;
Hartmann, Gunther ;
Palkovits, Miklos ;
Di Lauro, Robert ;
Wernet, Peter ;
Macino, Giuseppe ;
Rogler, Charles E. ;
Nagle, James W. ;
Ju, Jingyue ;
Papavasiliou, F. Nina ;
Benzing, Thomas ;
Lichter, Peter ;
Tam, Wayne ;
Brownstein, Michael J. ;
Bosio, Andreas ;
Borkhardt, Arndt ;
Russo, James J. ;
Sander, Chris ;
Zavolan, Mihaela .
CELL, 2007, 129 (07) :1401-1414
[9]
Glioma microvesicles carry selectively packaged coding and non-coding RNAs which alter gene expression in recipient cells [J].
Li, Cheryl C. Y. ;
Eaton, Sally A. ;
Young, Paul E. ;
Lee, Maggie ;
Shuttleworth, Rupert ;
Humphreys, David T. ;
Grau, Georges E. ;
Combes, Valery ;
Bebawy, Mary ;
Gong, Joyce ;
Brammah, Susan ;
Buckland, Michael E. ;
Suter, Catherine M. .
RNA BIOLOGY, 2013, 10 (08) :1333-1344
[10]
Distribution of miRNA expression across human tissues [J].
Ludwig, Nicole ;
Leidinger, Petra ;
Becker, Kurt ;
Backes, Christina ;
Fehlmann, Tobias ;
Pallasch, Christian ;
Rheinheimer, Steffi ;
Meder, Benjamin ;
Staehler, Cord ;
Meese, Eckart ;
Keller, Andreas .
NUCLEIC ACIDS RESEARCH, 2016, 44 (08) :3865-3877