Yu Zhong-Qing, Hu Feng-Lan, Cheng Qiong, Hao Jian-Hua, Zhang Jian-Hua, Lin Xue-Na, Zheng Bao, Fa Ping-Ping, Yu Su-Yan, Hu Li-Hua
Department of Blood Transfusion, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.
Department of Blood Transfusion, Shenzhen Nan Shan Hospital, Shenzhen, 518052, China.
J Huazhong Univ Sci Technolog Med Sci. 2015 Apr;35(2):309-315. doi: 10.1007/s11596-015-1429-4. Epub 2015 Apr 16.
This study looked into a family involving a rare mother-child ABO blood type inconsistency and explored its genetic and molecular basis. In the family, the mother had type AB blood and the father was blood type B and they gave birth to a baby of blood type O. Their blood types were phenotypically identified by using different techniques, including micro-column gel test, immune inhibition test, absorption and elution tests. The sequences of all 7 exons of ABO allele from the core family members were determined by using PCR and clone-based sequencing. The loci of mutated gene were compared against normal human genes. The result showed that the mother's erythrocytes were agglutinable with monoclonal anti-A antibody (2+) and had agglutination reaction with anti-B antibody (4+). The mother's serum registered agglutination action with standard blood type A cells. The findings showed an ABO inconsistency. When domestic antibodies were used, the mother's erythrocytes yielded agglutination reaction with humanized anti-B serum (4+) and anti-B monoclonal antibody but were non-agglutinable with humanized anti-A serum and anti-A monoclonal antibody. Upon absorption and elution, the titer of anit-A antibody was 128 both before and after the absorption test, with no significant difference found between pre- and post-absorption values. Our results confirmed that the mother's allelic gene was type B and contained type A. The father's blood type was type B, and son's blood type was type O. Clone-based sequencing revealed that the mother carried a heterozygous gene of B101.01 (ntA640→G)/O01, which contained an M214→V mutation that could express a weak expression of antigen A, resulting in blood type AB. However, their son did not have the M214→V mutation, which yielded a false ABO-inconsistency between him and his mother. We were led to conclude that type B gene with a M214→V mutation can encode both antigen B and weak antigen B that can lead to false ABO-inconsistencies.
本研究调查了一个涉及罕见母婴ABO血型不一致的家庭,并探索其遗传和分子基础。在这个家庭中,母亲为AB血型,父亲为B血型,他们育有一个O型血的婴儿。通过使用不同技术,包括微柱凝胶试验、免疫抑制试验、吸收和洗脱试验,对他们的血型进行了表型鉴定。利用聚合酶链反应(PCR)和基于克隆的测序法,确定了核心家庭成员ABO等位基因全部7个外显子的序列。将突变基因的位点与正常人类基因进行比较。结果显示,母亲的红细胞可被单克隆抗A抗体凝集(2+),并与抗B抗体发生凝集反应(4+)。母亲的血清与标准A型血细胞发生凝集作用。这些发现显示存在ABO血型不一致。当使用国产抗体时,母亲的红细胞与人源化抗B血清(4+)和抗B单克隆抗体发生凝集反应,但与人源化抗A血清和抗A单克隆抗体不发生凝集。经过吸收和洗脱后,吸收试验前后抗A抗体效价均为128,吸收前后的值无显著差异。我们的结果证实,母亲的等位基因为B型且含有A型。父亲血型为B型,儿子血型为O型。基于克隆的测序显示,母亲携带B101.01(ntA640→G)/O01杂合基因,其中包含一个M214→V突变,该突变可导致抗原A弱表达,从而呈现AB血型。然而,他们的儿子没有M214→V突变,这导致了他与母亲之间出现假的ABO血型不一致。我们得出结论,具有M214→V突变的B型基因可编码抗原B和弱抗原B,从而导致假的ABO血型不一致。