Qin Danqing, Wang Jicheng, Yao Cuize, Bao Xiuqin, Liang Jie, Du Li
Medical Genetics Center, Guangdong Women and Children Hospital, Guangzhou, Guangdong, People's Republic of China.
Maternal and Children Metabolic-Genetic Key Laboratory, Guangdong Women and Children Hospital, Guangzhou, Guangdong, People's Republic of China.
Hematology. 2023 Dec;28(1):2184118. doi: 10.1080/16078454.2023.2184118.
In the present study, two unrelated cases of Hb Q-Thailand heterozygosity unlinked with the (-α/) α-thalassemia deletion allele were identified by long-read single molecule real-time (SMRT) sequencing in southern China. The aim of this study was to report the hematological and molecular features as well as diagnostic aspects of the rare manifestation.
Hematological parameters and hemoglobin analysis results were recorded. A suspension array system for routine thalassemia genetic analysis and long-read SMRT sequencing were applied in parallel for thalassemia genotyping. Traditional methods, including Sanger sequencing, multiplex gap-polymerase chain reaction (gap-PCR) and multiplex ligation-dependent probe amplification (MLPA), were used together to confirm the thalassemia variants.
Long-read SMRT sequencing was used to diagnose two Hb Q-Thailand heterozygous patients for whom the hemoglobin variant was unlinked to the (-α/) allele for the first time. The hitherto undescribed genotypes were verified by traditional methods. Hematological parameters were compared with those of Hb Q-Thailand heterozygosity linked with the (-α/) deletion allele in our study. For the positive control samples, long-read SMRT sequencing revealed a linkage relationship between the Hb Q-Thailand allele and the (-α/) deletion allele.
Identification of the two patients confirms that the linkage relationship between the Hb Q-Thailand allele and the (-α/) deletion allele is a common possibility but not a certainty. Remarkably, as it is superior to traditional methods, SMRT technology may eventually serve as a more comprehensive and precise method that holds promising prospects in clinical practice, especially for rare variants.
在本研究中,通过长读长单分子实时(SMRT)测序在中国南方地区鉴定出两例与(-α/)α地中海贫血缺失等位基因不连锁的Hb Q-泰国杂合子无关病例。本研究的目的是报告这种罕见表现的血液学和分子特征以及诊断方面的情况。
记录血液学参数和血红蛋白分析结果。将用于常规地中海贫血基因分析的悬浮阵列系统和长读长SMRT测序并行应用于地中海贫血基因分型。同时使用包括桑格测序、多重缺口聚合酶链反应(gap-PCR)和多重连接依赖探针扩增(MLPA)在内的传统方法来确认地中海贫血变异。
长读长SMRT测序首次用于诊断两名Hb Q-泰国杂合子患者,其血红蛋白变异与(-α/)等位基因不连锁。通过传统方法验证了迄今未描述的基因型。将血液学参数与本研究中与(-α/)缺失等位基因连锁的Hb Q-泰国杂合子的参数进行了比较。对于阳性对照样本,长读长SMRT测序揭示了Hb Q-泰国等位基因与(-α/)缺失等位基因之间的连锁关系。
这两名患者的鉴定证实,Hb Q-泰国等位基因与(-α/)缺失等位基因之间的连锁关系是一种常见可能性,但并非必然。值得注意的是,由于SMRT技术优于传统方法,它最终可能成为一种更全面、精确的方法,在临床实践中具有广阔前景,尤其是对于罕见变异。