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Marked changes in red cell membrane proteins in hereditary spherocytosis: a proteomics approach

机译:遗传性球形细胞增多症中红细胞膜蛋白的显着变化:蛋白质组学方法

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摘要

Hereditary spherocytosis (HS) is the most common red cell membrane defect resulting from protein abnormalities. However, changes in red cell membrane proteins in HS remain under-investigated. We therefore evaluated red cell membrane proteome in non-splenectomized, mild-degree HS patients (n = 9) compared to healthy individuals (n = 5). Proteins derived from the red cell membranes of each subject were resolved in each two-dimensional gel and visualized by Deep Purple fluorescence staining. Spot matching and quantitative intensity analysis revealed 56 differentially expressed protein spots (41 increased and 15 decreased), which were then successfully identified by quadrupole time-of-flight mass spectrometry. Among these, seven isoforms/subunits of spectrin were markedly increased (up to 10.51 folds), whereas two isoforms/ subunits of band-3 protein were decreased approximately 50% as compared to normal red cells. However, two isoforms/subunits of protein 4.1 were increased, while another isoform/subunit was decreased. All these significantly altered proteins were subjected to global protein network analysis using Ingenuity Pathways Analysis tool, which revealed three important networks related to HS, including Network I: Cell death, genetic and hematological disorders; Network II: Cell cycle, carbohydrate metabolism and molecular transport; and Network III: Genetic and hematological disorders, cell-to-cell signaling and interactions. These data offer many opportunities and new roadmaps for further functional studies to better understand the biology and pathogenic mechanisms of HS.
机译:遗传性球囊细胞增多症(HS)是蛋白质异常导致的最常见的红细胞膜缺陷。但是,HS中红细胞膜蛋白的变化仍未得到充分研究。因此,与健康个体(n = 5)相比,我们评估了未脾切除的轻度HS患者(n = 9)中的红细胞膜蛋白质组。将来自每个受试者的红细胞膜的蛋白质溶解在每个二维凝胶中,并通过深紫色荧光染色可视化。斑点匹配和定量强度分析揭示了56个差异表达的蛋白质斑点(增加了41个,减少了15个),然后通过四极杆飞行时间质谱法成功鉴定出这些蛋白质。在这些蛋白中,血影蛋白的七个同工型/亚基显着增加(高达10.51倍),而band-3蛋白的两个同工型/亚基与正常红细胞相比下降了约50%。但是,蛋白质4.1的两个同工型/亚基增加,而另一个同工型/亚基减少。使用Ingenuity Pathways Analysis工具对所有这些显着改变的蛋白质进行了全局蛋白质网络分析,该工具揭示了与HS相关的三个重要网络,包括网络I:细胞死亡,遗传和血液疾病;网络二:细胞周期,碳水化合物代谢和分子运输;和网络III:遗传和血液疾病,细胞间信号传导和相互作用。这些数据为进一步的功能研究提供了许多机会和新的路线图,以更好地了解HS的生物学和致病机理。

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  • 来源
    《Molecular BioSystems》 |2012年第9期|p.2312-2322|共11页
  • 作者单位

    Division of Hematology, Department of Internal Medicine,Faculty of Medicine, Srinakarinwirot University, Bangkok, Thailand;

    Medical Proteomics Unit, Office for Research and Development,Faculty of Medicine, Siriraj Hospital, Mahidol University,12th Floor Adulyadej Vikrom Building, 2 Prannok Road, Bangkoknoi,Bangkok 10700, Thailand;

    Center for Research in Complex Systems Science, Mahidol University,Bangkoknoi, Bangkok, Thailand;

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