Title : Diagnosis of Russell-Silver syndrome by the combined bisulfite restriction analysis-denaturing high-performance liquid chromatography assay.

Pub. Date : 2009 Oct

PMID : 19814617






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1 In the present study, we investigated a possible method of quantitatively determining H19 hypomethylation in RSS patients using a combined bisulfite restriction analysis (COBRA)-denaturing high-performance liquid chromatography (DHPLC) assay; in this combined assay, polymerase chain reaction products amplified from the H19 differentially methylated region of bisulfite-treated genomic DNA were analyzed using a COBRA assay, which detects methylation-dependent sequence differences in the bisulfite-treated genomic DNA using a restriction enzyme analysis. hydrogen sulfite H19 imprinted maternally expressed transcript Homo sapiens
2 In the present study, we investigated a possible method of quantitatively determining H19 hypomethylation in RSS patients using a combined bisulfite restriction analysis (COBRA)-denaturing high-performance liquid chromatography (DHPLC) assay; in this combined assay, polymerase chain reaction products amplified from the H19 differentially methylated region of bisulfite-treated genomic DNA were analyzed using a COBRA assay, which detects methylation-dependent sequence differences in the bisulfite-treated genomic DNA using a restriction enzyme analysis. hydrogen sulfite H19 imprinted maternally expressed transcript Homo sapiens
3 In the present study, we investigated a possible method of quantitatively determining H19 hypomethylation in RSS patients using a combined bisulfite restriction analysis (COBRA)-denaturing high-performance liquid chromatography (DHPLC) assay; in this combined assay, polymerase chain reaction products amplified from the H19 differentially methylated region of bisulfite-treated genomic DNA were analyzed using a COBRA assay, which detects methylation-dependent sequence differences in the bisulfite-treated genomic DNA using a restriction enzyme analysis. hydrogen sulfite H19 imprinted maternally expressed transcript Homo sapiens