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Enzymatic Amplification of β-Globin Genomic Sequences and Restriction Site Analysis for Diagnosis of Sickle Cell Anemia

Science · 1985 · Vol. 230(4732) · pp. 1350–1354

Abstract

Two new methods were used to establish a rapid and highly sensitive prenatal diagnostic test for sickle cell anemia. The first involves the primer-mediated enzymatic amplification of specific beta-globin target sequences in genomic DNA, resulting in the exponential increase (220,000 times) of target DNA copies. In the second technique, the presence of the beta A and beta S alleles is determined by restriction endonuclease digestion of an end-labeled oligonucleotide probe hybridized in solution to the amplified beta-globin sequences. The beta-globin genotype can be determined in less than 1 day on samples containing significantly less than 1 microgram of genomic DNA.

Hemoglobinopathies and Related DisordersPrenatal Screening and DiagnosticsGenomics and Chromatin DynamicsRestriction enzymeMolecular biologygenomic DNAEndonucleaseBiologyGlobinGenotypePrimer (cosmetics)DNAMultiple displacement amplification

MeSH terms

AllelesAnemia, Sickle CellBase SequenceDNA-Directed DNA PolymeraseDNA Restriction EnzymesEscherichia coliGene AmplificationGlobinsHumansNucleic Acid HybridizationPolymorphism, GeneticClinical Laboratory Techniques
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