| Literature DB >> 23885183 |
Mami Nakamura1, Ayako Miyazaki, Takayuki Takubo, Yoko Matsuzawa, Jun Saito, Masao Omura, Tetsuo Nishikawa.
Abstract
Hemoglobin A1c (HbA1c) is an important parameter for evaluating long-term (6-8 weeks) control of blood glucose levels in patients with diabetes mellitus. We report a Japanese diabetic case who harbored abnormal Hb and demonstrated falsely low HbA1c levels in the regular ion exchange HPLC-based assay. His abnormal β-globin chain had an amino acid replacement that corresponded to glycine to serine substitution at amino acid position 136 of the β-globin chain (Hb Perpignan). Accordingly, a heterozygotic point mutation replacing guanine by adenine at nucleotide position 406 (β136G > S) was identified in the β-globin gene of the proband and his son. These results indicate that the patient had Hb Perpignan, and this abnormal Hb interfered with the HPLC-based HbA1c assay commonly used in the clinic. The cases presented are the first report of patients in the Japanese population harboring Hb Perpignan (β136G > S).Entities:
Keywords: Perpignan; diabetic; hemoglobin variant
Year: 2011 PMID: 23885183 PMCID: PMC3699472 DOI: 10.4137/JCM.S5971
Source DB: PubMed Journal: Jpn Clin Med ISSN: 1179-6707
Figure 1Ion exchange HPLC elution profile of the patient’s HbA1c. A split abnormal A1c peak (shaded area) was observed immediately before HbA0 fraction.
Figure 2Transformed ESI mass spectrum of the patient’s whole HbA. An abnormal β-chain peptide with 29.5 Da larger molecular weight than the normal β-chain was detected.
Figure 3Spectra of the on-line HPLC/ESI/MS obtained with the triptic digests of the patient’s β-globin peptide. A) Singly and doubly charged ions of abnormal βT-14 (m/z 1180.3 and m/z 591.0) and normal βT-11 (m/z 1127.3 and m/z 564.4) were recorded at elution time 19.7 min. B) Singly and doubly charged ions of normal βT-14 (m/z 1150.4 and m/z 576.0) were recorded at elution time 18.8 min.
Figure 4MS/MS pattern of analyzing β-globin peptide. Glycine corresponding to the amino acid located in position 136 of the β-globin peptide was substituted by serine.
Figure 5Identification of heterozygotic point mutation replacing guanine by adenine at nucleotide position 406 in the patient’s HBB gene. Signals of guanine and adenine were identified at nucleotide position 406 of the patient’s HBB gene (circled), which develop abnormal β-globin chain harboring glycine (GGT) to serine (AGT) replacement at amino acid position 136.