Kong Yongkui, Yang Hecai, Shao Ming, Chen-Li Yinghui, Zhang Wanjin, Zhang Xiaoyan, Wang Jing, Lyu Xianping, Yang Qiankun
Department of Blood Transfusion, the First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan 450052, China.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi. 2024 Sep 10;41(9):1039-1044. doi: 10.3760/cma.j.cn511734-20230823-00083.
To explore the Rh genotype for a female with RhD(-) blood type and its molecular basis.
A 26-year-old female who had attended the outpatient clinic of the First Affiliated Hospital of Zhengzhou University in August 2019 was selected as the study subject. Peripheral blood samples were collected from the proband and her parents for Rh phenotyping with gel card method. PCR-sequence-based typing (PCR-SBT) and DNA sequencing were used to determine the RHD zygosity and Rh genotype of the proband and her parents. Homology modeling of Rh proteins was performed with bioinformatic software, and protein structural alterations caused by the variant was simulated by molecular dynamics.
Serological tests showed that the proband and her father both had weakened e antigen of the Rh phenotype. PCR-SBT and DNA sequencing showed that the genotypes of the proband and her parents were dce/dCE, dce/DcE and dCE/DcE, respectively. And the genotypes of the RHD and RHCE of the proband were RHD01N.01/RHD01N.16, RHCE01.01/RHCE04, respectively. Protein simulation and molecular dynamics analysis revealed that the ce_16C variant resulted from RHCE*ce (c.48G>C) may alter the structure of intracellular and extracellular loops, mainly affecting the mobility of extracellular loops 2, 6 and intracellular loops 3, 4.
Variant of the RHCE*ce allele c.48G>C probably underlay the weakened e antigen in this proband.
探究一名RhD阴性血型女性的Rh基因型及其分子基础。
选取2019年8月在郑州大学第一附属医院门诊就诊的一名26岁女性作为研究对象。采集先证者及其父母的外周血样本,采用凝胶卡法进行Rh血型鉴定。采用基于序列的聚合酶链反应分型(PCR-SBT)和DNA测序确定先证者及其父母的RHD纯合性和Rh基因型。使用生物信息学软件对Rh蛋白进行同源建模,并通过分子动力学模拟该变异导致的蛋白质结构改变。
血清学检测显示先证者及其父亲的Rh表型中e抗原均减弱。PCR-SBT和DNA测序显示,先证者及其父母的基因型分别为dce/dCE、dce/DcE和dCE/DcE。先证者的RHD和RHCE基因型分别为RHD01N.01/RHD01N.16、RHCE01.01/RHCE04。蛋白质模拟和分子动力学分析显示,RHCE*ce(c.48G>C)导致的ce_16C变异可能会改变细胞内和细胞外环的结构,主要影响细胞外环2、6和细胞内环3、4的流动性。
RHCE*ce等位基因c.48G>C的变异可能是该先证者e抗原减弱的原因。