CD59 gene: 143 haplotypes of 22,718 nucleotides length by computational phasing in 113 individuals from different ethnicities.

IF 2.5 3区 医学 Q2 HEMATOLOGY Transfusion Pub Date : 2024-07-01 Epub Date: 2024-05-30 DOI:10.1111/trf.17869
Kshitij Srivastava, Qinan Yin, Addisalem Taye Makuria, Maria Rios, Amha Gebremedhin, Willy Albert Flegel
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Abstract

Background: CD59 deficiency due to rare germline variants in the CD59 gene causes disabilities, ischemic strokes, neuropathy, and hemolysis. CD59 deficiency due to common somatic variants in the PIG-A gene in hematopoietic stem cells causes paroxysmal nocturnal hemoglobinuria. The ISBT database lists one nonsense and three missense germline variants that are associated with the CD59-null phenotype. To analyze the genetic diversity of the CD59 gene, we determined long-range CD59 haplotypes among individuals from different ethnicities.

Methods: We determined a 22.7 kb genomic fragment of the CD59 gene in 113 individuals using next-generation sequencing (NGS), which covered the whole NM_203330.2 mRNA transcript of 7796 base pairs. Samples came from an FDA reference repository and our Ethiopia study cohorts. The raw genotype data were computationally phased into individual haplotype sequences.

Results: Nucleotide sequencing of the CD59 gene of 226 chromosomes identified 216 positions with single nucleotide variants. Only three haplotypes were observed in homozygous form, which allowed us to assign them unambiguously as experimentally verified CD59 haplotypes. They were also the most frequent haplotypes among both cohorts. An additional 140 haplotypes were imputed computationally.

Discussion: We provided a large set of haplotypes and proposed three verified long-range CD59 reference sequences, based on a population approach, using a generalizable rationale for our choice. Correct long-range haplotypes are useful as template sequences for allele calling in high-throughput NGS and precision medicine approaches, thus enhancing the reliability of clinical diagnostics. Long-range haplotypes can also be used to evaluate the influence of genetic variation on the risk of transfusion reactions or diseases.

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CD59 基因:通过对 113 个不同种族的个体进行计算分期,得出长度为 22,718 个核苷酸的 143 个单倍型。
背景:CD59 基因罕见种系变异导致的 CD59 缺乏症会引起残疾、缺血性中风、神经病变和溶血。造血干细胞中 PIG-A 基因的常见体细胞变异导致的 CD59 缺乏症会引起阵发性夜间血红蛋白尿。ISBT 数据库列出了与 CD59 缺失表型相关的一个无义和三个错义种系变异。为了分析 CD59 基因的遗传多样性,我们测定了不同种族个体的 CD59 长程单倍型:我们使用新一代测序技术(NGS)测定了 113 个个体的 CD59 基因的 22.7 kb 基因组片段,该片段覆盖了 7796 个碱基对的整个 NM_203330.2 mRNA 转录本。样本来自 FDA 参考资源库和埃塞俄比亚研究队列。原始基因型数据通过计算分期为个体单倍型序列:结果:对 226 条染色体的 CD59 基因进行了核苷酸测序,发现 216 个位置存在单核苷酸变异。仅观察到三种单倍型为同源形式,因此我们可以明确地将它们归类为经实验验证的 CD59 单倍型。它们也是两个队列中最常见的单倍型。另外 140 个单倍型是通过计算得到的:讨论:我们提供了大量的单倍型,并根据群体方法提出了三个经过验证的长程 CD59 参考序列,在选择时使用了可推广的理由。正确的长程单倍型可作为高通量 NGS 和精准医疗方法中等位基因调用的模板序列,从而提高临床诊断的可靠性。长程单倍型还可用于评估遗传变异对输血反应或疾病风险的影响。
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来源期刊
Transfusion
Transfusion 医学-血液学
CiteScore
4.70
自引率
20.70%
发文量
426
审稿时长
1 months
期刊介绍: TRANSFUSION is the foremost publication in the world for new information regarding transfusion medicine. Written by and for members of AABB and other health-care workers, TRANSFUSION reports on the latest technical advances, discusses opposing viewpoints regarding controversial issues, and presents key conference proceedings. In addition to blood banking and transfusion medicine topics, TRANSFUSION presents submissions concerning patient blood management, tissue transplantation and hematopoietic, cellular, and gene therapies.
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