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JAK2V617F 突变诱导的原发性骨髓纤维化中巨核细胞整合素 α2 和 β1 糖蛋白的鉴定。

Characterization of Glycoproteoforms of Integrins α2 and β1 in Megakaryocytes in the Occurrence of JAK2V617F Mutation-Induced Primary Myelofibrosis.

机构信息

Department of Biochemistry, Center for Biomedical Mass Spectrometry, Boston University School of Medicine, Boston, Massachusetts, USA; Department of Medicine and Whitaker Cardiovascular Institute, Boston University School of Medicine, Boston, Massachusetts, USA.

Department of Medicine and Whitaker Cardiovascular Institute, Boston University School of Medicine, Boston, Massachusetts, USA.

出版信息

Mol Cell Proteomics. 2022 Apr;21(4):100213. doi: 10.1016/j.mcpro.2022.100213. Epub 2022 Feb 17.

Abstract

Primary myelofibrosis (PMF) is a neoplasm prone to leukemic transformation, for which limited treatment is available. Among individuals diagnosed with PMF, the most prevalent mutation is the JAK2V617F somatic point mutation that activates the Janus kinase 2 (JAK2) enzyme. Our earlier reports on hyperactivity of β1 integrin and enhanced adhesion activity of the α2β1 complex in JAK2V617F megakaryocytes (MKs) led us to examine the new hypothesis that this mutation leads to posttranslational modification via changes in glycosylation. Samples were derived from immunoprecipitation of MKs obtained from Vav1-hJAK2 and WT mice. Immunoprecipitated fractions were separated by SDS-PAGE and analyzed using LC-MS/MS techniques in a bottom-up glycoproteomics workflow. In the immunoprecipitate, glycopeptiforms corresponding to 11 out of the 12 potential N-glycosylation sites of integrin β1 and to all nine potential glycosylation sites of integrin α2 were observed. Glycopeptiforms were compared across WT and JAK2V617F phenotypes for both integrins. The overall trend observed is that JAK2V617F mutation in PMF MKs leads to changes in β1 glycosylation; in most cases, it results in an increase in the integrated area of glycopeptiforms. We also observed that in mutated MKs, changes in integrin α2 glycosylation were more substantial than those observed for integrin β1 glycosylation, a finding that suggests that altered integrin α2 glycosylation may also affect activation. Additionally, the identification of proteins associated to the cytoskeleton that were co-immunoprecipitated with integrins α2 and β1 demonstrated the potential of the methodology employed in this study to provide some insight, at the peptide level, into the consequences of integrin activation in MKs. The extensive and detailed glycosylation patterns we uncovered provide a basis for future functional studies of each site in control cells as compared to JAK2V617F-mutated cells. Data are available via ProteomeXchange with identifier PXD030550.

摘要

原发性骨髓纤维化(PMF)是一种易发生白血病转化的肿瘤,目前治疗方法有限。在诊断为 PMF 的个体中,最常见的突变是 JAK2V617F 体细胞点突变,该突变激活了 Janus 激酶 2(JAK2)酶。我们之前的报告显示,JAK2V617F 巨核细胞(MK)中β1 整合素的过度活跃和α2β1 复合物的粘附活性增强,这促使我们提出了一个新的假设,即这种突变通过糖基化的变化导致翻译后修饰。样本来自 Vav1-hJAK2 和 WT 小鼠获得的 MKs 的免疫沉淀。免疫沉淀的分数通过 SDS-PAGE 分离,并在从头糖蛋白质组学工作流程中使用 LC-MS/MS 技术进行分析。在免疫沉淀中,观察到对应于整合素β1 的 12 个潜在 N-糖基化位点中的 11 个和整合素α2 的 9 个潜在糖基化位点中的所有糖肽形式。比较了 WT 和 JAK2V617F 表型的两种整合素的糖肽形式。观察到的总体趋势是,PMF MKs 中的 JAK2V617F 突变导致β1 糖基化的变化;在大多数情况下,它导致糖肽形式的整合面积增加。我们还观察到,在突变的 MKs 中,整合素α2 糖基化的变化比整合素β1 糖基化的变化更为显著,这一发现表明改变的整合素α2 糖基化也可能影响激活。此外,与整合素α2 和β1 共免疫沉淀的与细胞骨架相关的蛋白质的鉴定表明,本研究中使用的方法具有提供在肽水平上深入了解 MK 中整合素激活的潜力。我们发现的广泛而详细的糖基化模式为在对照细胞与 JAK2V617F 突变细胞相比,对每个位点进行未来功能研究提供了基础。数据可通过 ProteomeXchange 以标识符 PXD030550 获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/928f/8968581/bc27b7b6a848/fx1.jpg

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