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Identification and Classification of Position-specific GABAA Receptor Subunit Missense Variants for Their Role In Hippocampal Pyramidal Neurons
Published on: June 6, 2025
Molecular and clinical characterization of -α4.2 subtypes in Shenzhen, Southern China
Lijuan Wang1,2, Yaqin Song1,2, Hui Gao1,2
1Forensic Evidence Laboratory, Shenzhen People's Hospital, The Second Clinical Medical College, Jinan University, The First Affiliated Hospital, Southern University of Science and Technology, Shenzhen, People's Republic of China.
Objectives:
The 4.2-kb deletion (-α4.2) is a common cause of α-thalassemia in southern China. However, the molecular characteristics and clinical phenotypes of its subtypes remain incompletely characterized. This study aims to investigate these knowledge gaps for -α4.2 subtypes, explore their formation mechanisms, and determine their association with HBA1:c.223G>C (p.Asp75His; Hb Q-Thailand).
Methods:
We retrospectively analyzed α-thalassemia testing data from 18,050 individuals, identifying 112 -α4.2 carriers previously characterized by Multiplex Ligation-dependent Probe Amplification (MLPA). Those MLPA data were used for subtyping. Sanger sequencing detected HBA1:c.223G>C and deletion breakpoints. Bioinformatics analyzed subtype distinctions. Associated hematological parameters were evaluated for clinical significance.
Results:
MLPA subtyped 98.2% (110/112) carriers: 88.2% (97/110) as -α4.2 (C) and 11.8% (13/110) as -α4.2 (B). HBA1:c.223G>C displayed strong linkage with -α4.2 (B) [11/13 cases; termed -α4.2-Q (B)], but not with -α4.2 (C). Notably, we recognized two novel -α4.2 (B) cases lacking this mutation [-α4.2-without Q association (B)], representing the first report of such variants. Breakpoint analyses showed distinct structural features: -α4.2 (C) has an A-rich sequence with single-stranded characteristics, while -α4.2 (B) predictedly forms complex stable secondary structures. Hematological analysis showed that -α4.2-Q (B) exhibited the characteristic Hb Q-Thailand pattern, while -α4.2-without Q association (B) had parameters similar to -α4.2 (C).
Conclusion:
Based on this systematic analysis, we proposed a dual-mechanism hypothesis ('functional trigger + linkage maintenance') to explain the Hb Q-Thailand/-α4.2 (B) association. Hematological findings were consistent. These results deepen our understanding of the molecular and clinical characteristics of -α4.2 subtypes, helping clinicians provide more precise counseling.
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