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Profiling of the metabolic transcriptome via single molecule molecular inversion probes

Authors :
Bitter, T.J.J. de
Water, C. van de
Heuvel, C.N.A.M. van den
Zeelen, C.
Eijkelenboom, A.
Tops, B.B.
Oosterwijk, E.
Mulders, P.F.A.
Laan, M. ter
Lith, S.A. van
Leenders, W.P.
Bitter, T.J.J. de
Water, C. van de
Heuvel, C.N.A.M. van den
Zeelen, C.
Eijkelenboom, A.
Tops, B.B.
Oosterwijk, E.
Mulders, P.F.A.
Laan, M. ter
Lith, S.A. van
Leenders, W.P.
Source :
Scientific Reports; 2045-2322; 7; 11402; ~Scientific Reports~~~~~2045-2322~~7~~11402
Publication Year :
2017

Abstract

Contains fulltext : 176912.pdf (publisher's version ) (Open Access)<br />Cancer-specific metabolic alterations are of high interest as therapeutic targets. These alterations vary between tumor types, and to employ metabolic targeting to its fullest potential there is a need for robust methods that identify candidate targetable metabolic pathways in individual cancers. Currently, such methods include 13C-tracing studies and mass spectrometry/ magnetic resonance spectroscopic imaging. Due to high cost and complexity, such studies are restricted to a research setting. We here present the validation of a novel technique of metabolic profiling, based on multiplex targeted next generation sequencing of RNA with single molecule molecular inversion probes (smMIPs), designed to measure activity of and mutations in genes that encode metabolic enzymes. We here profiled an isogenic pair of cell lines, differing in expression of the Von Hippel Lindau protein, an important regulator of hypoxia-inducible genes. We show that smMIP-profiling provides relevant information on active metabolic pathways. Because smMIP-based targeted RNAseq is cost-effective and can be applied in a medium high-throughput setting (200 samples can be profiled simultaneously in one next generation sequencing run) it is a highly interesting approach for profiling of the activity of genes of interest, including those regulating metabolism, in a routine patient care setting.

Details

Database :
OAIster
Journal :
Scientific Reports; 2045-2322; 7; 11402; ~Scientific Reports~~~~~2045-2322~~7~~11402
Publication Type :
Electronic Resource
Accession number :
edsoai.on1284116907
Document Type :
Electronic Resource