An electrophoretic variant of the lactate dehydrogenase (LDH)-B(H) subunit was discovered in a patient with diabetes mellitus. His LDH activity in serum was slightly lower than normal and the LDH isozyme pattern showed an abnormal migration indicating an LDH-B subunit variant of the fast type. The L
Molecular characterization of genetic mutations in human lactate dehydrogenase (LDH) B (H) variant
โ Scribed by Kayoko Sudo; Masato Maekawa; Atsushi Tomonaga; Toshihiko Tsukada; Toshimasa Nakayama; Motoshi Kitamura; Steven S. -L. Li; Takashi Kanno; Jun Toriumi
- Publisher
- Springer
- Year
- 1992
- Tongue
- English
- Weight
- 886 KB
- Volume
- 89
- Category
- Article
- ISSN
- 0340-6717
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โฆ Synopsis
We have previously detected a single base substitution of G by A at the Arg codon CGC in exon 4 of the mutant lactate dehydrogenase (LDH) gene, an unstable LDH-B variant (case 1). Here, we use the polymerase chain reaction (PCR) to amplify genomic DNA of two cases (the original case 1 and a new patient, case 2). We were able to confirm that case 1 is homozygous for the mutation, causing a replacement of the conserved Arg by His at residue 173. The resulting LDH-B variant subunit is unstable in vivo. Whereas the mutation in exon 4 was not observed in case 2, a different single base substitution of A by C was detected at the Ser codon AGT in exon 3. This mutation causes a replacement of the conserved Ser by Arg at residue 131. Genomic analysis of the family of case 2 by mismatched PCR showed that the missense mutation was consistent with their biochemical phenotypes. The replacement results in a conformational change of the residues near the Ser, probably because the side chain of Arg is much more bulky than that of Ser. The change may affect the arrangement of the cofactor binding site and result in the loss of enzyme activity. The experimental observations are consistent with computer graphics analyses.
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