Higher Education Institutional Excellence Programme of the Ministry of Human Capacities
in Hungary(20428-3/2018/FEKUTSTRAT) Támogató: Emberi Erőforrások Minisztériuma
(K_132695)
(NKFI FK 135065) Támogató: Hungarian National Research, Development and Innovation
Office
Szakterületek:
Egyéb mezőgazdaság-tudományok
Egyéb műszaki tudományok és technológiák
Kémiai tudományok
Global DNA methylation and hydroxymethylation play an important role in gene expression.
They can be connected with several diseases. The modification status could be a biomarker
to determine the status of disease. A fast, easy and accurate liquid chromatography
- tandem mass spectrometry method has been developed for the precise quantitation
of 5-methylcytosine and 5-hydroxymethylcytosine. Formic acid was used for the hydrolysis
of the DNA strand resulting in nucleobases. These polar hydrolysis products were separated
on a normal phase column using reversed phase eluents in inverse gradient mode. Multiple
reaction monitoring was applied to achieve high selectivity and sensitivity for the
quantitation. A new relative quantitation model was developed by using guanine, as
an internal standard, present in samples. The new method was successfully validated
with excellent accuracy and precision values in the range of 0.005-0.5% for 5hmC and
1-15% for 5mC. The main advantages of this quantitation method are that, due to relative
quantitation, calibration curves can be used without reacquiring the calibration points
and no additional isotope labeled internal standards are required. The method was
tested to identify the concentrations of 5mC and 5hmC in various sample types. The
lowest level of DNA sample required in the case of 0.005% 5hmC is 0.5 mu g.