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通过自上而下的质谱分析和 R 编程工具对结构血红蛋白变体进行表征,用于快速鉴定。

Characterization of Structural Hemoglobin Variants by Top-Down Mass Spectrometry and R Programming Tools for Rapid Identification.

机构信息

Department of Chemistry and Biochemistry, Florida State University, Tallahassee, Florida 32308, United States.

Department of Pathology, University of Utah School of Medicine, Salt Lake City, Utah 84132, United States.

出版信息

J Am Soc Mass Spectrom. 2022 Jan 5;33(1):123-130. doi: 10.1021/jasms.1c00291. Epub 2021 Dec 26.

Abstract

Hemoglobinopathies are one of the most prevalent genetic disorders, affecting millions throughout the world. These are caused by pathogenic variants in genes that control the production of hemoglobin (Hb) subunits. As the number of known Hb variants has increased, it has become more challenging to obtain unambiguous results from routine chromatographic assays employed in the clinical laboratory. Top-down proteomic analysis of Hb by mass spectrometry is a definitive method to directly characterize the sequences of intact subunits. Here, we apply "chimeric ion loading" to characterize Hb β subunit variants. In this technique, product ions derived from complementary dissociation techniques are accumulated in a multipole storage device before delivery to a 21 T Fourier-transform ion cyclotron resonance mass spectrometer for simultaneous detection. To further improve the efficiency of identification of Hb variants and localization of the mutation site(s), we developed an R programming script, "Variants Identifier", to search top-down data against a database containing accurate intact mass differences and diagnostic ions from investigated Hb variants. A second R script, "PredictDiag", was developed and employed to determine relevant diagnostic ions for additional Hb variants with known sequences. These two R scripts were successfully applied to the identification of a Hb δ-β fusion protein and other Hb variants. The combination of chimeric ion loading and the above R scripts enables rapid and reliable interpretation of top-down mass spectrometry data, regardless of activation type, for Hb variant identification.

摘要

血红蛋白病是最常见的遗传疾病之一,影响着全球数百万人。这些疾病是由控制血红蛋白 (Hb) 亚基产生的基因中的致病性变异引起的。随着已知 Hb 变异体数量的增加,从临床实验室中使用的常规色谱分析中获得明确结果变得更加具有挑战性。通过质谱对 Hb 进行自上而下的蛋白质组分析是直接对完整亚基序列进行特征分析的确定方法。在这里,我们应用“嵌合离子加载”来表征 Hbβ 亚基变体。在该技术中,互补解离技术衍生的产物离子在多极存储设备中累积,然后输送到 21 T 傅里叶变换离子回旋共振质谱仪中进行同时检测。为了进一步提高 Hb 变体鉴定和突变位点定位的效率,我们开发了一个 R 编程脚本“Variants Identifier”,用于根据包含准确完整质量差异和研究中 Hb 变体的诊断离子的数据库搜索自上而下的数据。开发并使用了第二个 R 脚本“PredictDiag”来确定具有已知序列的其他 Hb 变体的相关诊断离子。这两个 R 脚本成功应用于 Hbδ-β 融合蛋白和其他 Hb 变体的鉴定。嵌合离子加载和上述 R 脚本的组合可实现对 Hb 变体识别的自上而下质谱数据的快速和可靠解释,而与激活类型无关。

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