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靶向新一代测序和长读长 HiFi 测序为临床上有意义的 KLF1 变异提供了新的见解。

Targeted next-generation sequencing and long-read HiFi sequencing provide novel insights into clinically significant KLF1 variants.

机构信息

State Key Laboratory of Genetic Engineering and MOE Engineering Research Center of Gene Technology, School of Life Sciences, Fudan University, 200433, Shanghai, China.

Shanghai Institute of Blood Transfusion, Shanghai Blood Center, 20051, Shanghai, China.

出版信息

BMC Genomics. 2024 Mar 1;25(1):230. doi: 10.1186/s12864-024-10148-x.

Abstract

BACKGROUND

Krüppel-like factor 1 (KLF1), a crucial erythroid transcription factor, plays a significant role in various erythroid changes and haemolytic diseases. The rare erythrocyte Lutheran inhibitor (In(Lu)) blood group phenotype serves as an effective model for identifying KLF1 hypomorphic and loss-of-function variants. In this study, we aimed to analyse the genetic background of the In(Lu) phenotype in a population-based sample group by high-throughput technologies to find potentially clinically significant KLF1 variants.

RESULTS

We included 62 samples with In(Lu) phenotype, screened from over 300,000 Chinese blood donors. Among them, 36 samples were sequenced using targeted Next Generation Sequencing (NGS), whereas 19 samples were sequenced using High Fidelity (HiFi) technology. In addition, seven samples were simply sequenced using Sanger sequencing. A total of 29 hypomorphic or loss-of-function variants of KLF1 were identified, 21 of which were newly discovered. All new variants discovered by targeted NGS or HiFi sequencing were validated through Sanger sequencing, and the obtained results were found to be consistent. The KLF1 haplotypes of all new variants were further confirmed using clone sequencing or HiFi sequencing. The lack of functional KLF1 variants detected in the four samples indicates the presence of additional regulatory mechanisms. In addition, some samples exhibited BCAM polymorphisms, which encodes antigens of the Lutheran (LU) blood group system. However, no BCAM mutations which leads to the absence of LU proteins were detected.

CONCLUSIONS

High-throughput sequencing methods, particularly HiFi sequencing, were introduced for the first time into genetic analysis of the In(Lu) phenotype. Targeted NGS and HiFi sequencing demonstrated the accuracy of the results, providing additional advantages such as simultaneous analysis of other blood group genes and clarification of haplotypes. Using the In(Lu) phenotype, a powerful model for identifying hypomorphic or loss-of-function KLF1 variants, numerous novel variants have been detected, which have contributed to the comprehensive understanding of KLF1. These clinically significant KLF1 mutations can serve as a valuable reference for the diagnosis of related blood cell diseases.

摘要

背景

Krüppel 样因子 1(KLF1)是一种重要的红细胞转录因子,在各种红细胞变化和溶血性疾病中发挥重要作用。罕见的红细胞 Lutheran 抑制剂(In[Lu])血型表型可作为识别 KLF1 功能低下和功能丧失变异体的有效模型。在这项研究中,我们旨在通过高通量技术分析基于人群的样本组中 In[Lu]表型的遗传背景,以发现潜在的具有临床意义的 KLF1 变异体。

结果

我们从 30 多万名中国献血者中筛选出 62 个具有 In[Lu]表型的样本,其中 36 个样本使用靶向下一代测序(NGS)进行测序,19 个样本使用高保真度(HiFi)技术进行测序。此外,7 个样本仅使用 Sanger 测序进行测序。总共鉴定出 29 个 KLF1 功能低下或功能丧失变异体,其中 21 个为新发现。靶向 NGS 或 HiFi 测序发现的所有新变异均通过 Sanger 测序验证,结果一致。所有新变异的 KLF1 单倍型通过克隆测序或 HiFi 测序进一步确认。在四个样本中检测到缺乏功能性 KLF1 变异体表明存在其他调节机制。此外,一些样本表现出 BCAM 多态性,其编码 Lutheran(LU)血型系统的抗原。然而,没有检测到导致 LU 蛋白缺失的 BCAM 突变。

结论

首次将高通量测序方法,特别是 HiFi 测序方法,引入 In[Lu]表型的遗传分析中。靶向 NGS 和 HiFi 测序证明了结果的准确性,同时具有分析其他血型基因和阐明单倍型等额外优势。利用 In[Lu]表型这一强大的 KLF1 功能低下或功能丧失变异体识别模型,检测到了许多新的变异体,有助于全面了解 KLF1。这些具有临床意义的 KLF1 突变可以作为相关血细胞疾病诊断的有价值参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae6b/10908068/388ee89aed53/12864_2024_10148_Fig1_HTML.jpg

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