首页|A糖基转移酶基因变异导致Am表型的遗传学和生物信息学分析

A糖基转移酶基因变异导致Am表型的遗传学和生物信息学分析

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目的 研究1例Am亚型的血清学特性和分子遗传机制.方法 对1例ABO血型血清学方法鉴定正反定型不一致的标本,进行ABO基因的完整编码区和包括内含子1转录因子结合位点进行分段直接测序,对第6~7外显子的PCR产物进行克隆和测序,并对变异位点采用生物信息学软件进行预测分析.结果 该标本血清学检测为Am表型,在第6、7外显子存在261delG、467C/T和912C/A杂合,在内含子1中未发现碱基缺失和改变.进一步的TA克隆和测序显示该标本存在ABO*O.01.01等位基因和ABO*A1.02等位基因背景下c.912 C>A(p.S304R)变异的新等位基因.该新等位基因序列已被GenBank数据库收录,登录号为JX489776.PolyPhen2和PROVEAN算法分别预测c.912C>A变异"可能有害"和"有害".自由能变化(ΔΔG)值预测其可能影响蛋白的稳定性.蛋白模拟模型提示p.S304R可造成α-1,3-N-乙酰半乳糖胺转移酶局部氢键网格的改变.结论 α-1,3-N-乙酰半乳糖胺转移酶基因的c.912 C>A(p.S304R)变异可能造成酶蛋白结构和功能的失稳,进而导致A抗原表达减弱.
Genetic and bioinformatics analysis of an individual with Am phenotype due to variant of A-glycosyltransferase en-zyme gene
Objective To investigate the serological characteristics and molecular mechanism of an individual with Am phenotype.Methods The sample with ABO blood group discrepancy was confirmed by serological techniques.The full cod-ing and flanking regions of the ABO gene including intron 1 transcription factor binding site were identified through direct se-quencing of PCR-amplified products.PCR products of exon 6-7 were validated to isolate the ABO gene haplotypes by clo-ning and sequencing individual colonies.Bioinformatics software was used to analyze the structure of the mutant protein.Re-sults The serologic characteristics of ABO blood typing showed the rare Am phenotype.The c.467C/T and c.912C/A heter-ozygous sites in exon 7 were identified by direct sequencing analysis.Further TA cloning and sequencing revealed that the patient carried an ABO*O.01.01 allele and a novel ABO*A allele.The new allele sequence had one nucleotide alteration(C>A)at position 912 on the background of the ABO*A1.02 allele.The new allele sequence has been included in the Gen-Bank database with the entry number JX489776.The c.912C>A mutation was predicted to be"probably damaging"and"deleterious"by PolyPhen2 and PROVEAN algorithms,respectively.The free energy change(ΔΔG)value predicted it to have a destabilizing effect on the GTA protein.Meanwhile,modeling of the 3D structure predicted that the p.S304R amino acid substitution may alter the hydrogen bond of the GTA protein.Conclusion The p.S304R substitution of α-1,3-N-acetylgalactosaminyltransferase gene may reduce the antigen expression owing to a greatly destabilizing effect on the structure and function of the GTA protein.

Am phenotypeA-glycosyltransferase enzymemolecular-geneticbioinformatics analysis

章旭、周助人、黄旭颖、李丽春、李晓丰、李剑平

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沈阳中心血站/辽宁省血液中心输血医学研究所,辽宁沈阳 110044

Am亚型 A糖基转移酶基因 分子机制 生物信息学分析

沈阳市科技创新平台建设计划项目

21-104-0-15

2024

中国输血杂志
中国输血协会 中国医学科学院输血研究所

中国输血杂志

CSTPCD
影响因子:1.279
ISSN:1004-549X
年,卷(期):2024.37(10)