Alterations in Hurler-Scheie Syndrome Revealed by Mass Spectrometry-Based Proteomics and Phosphoproteomics Analysis.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-11-01 Epub Date: 2024-10-29 DOI:10.1089/omi.2024.0171
Madan Gopal Ramarajan, K T Shreya Parthasarathy, Kiran Bharat Gaikwad, Neha Joshi, Kishore Garapati, Richard K Kandasamy, Jyoti Sharma, Akhilesh Pandey
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Abstract

Hurler-Scheie syndrome (MPS IH/S), also known as mucopolysaccharidosis type I-H/S (MPS IH/S), is a lysosomal storage disorder caused by deficiency of the enzyme alpha-L-iduronidase (IDUA) leading to the accumulation of glycosaminoglycans (GAGs) in various tissues, resulting in a wide range of symptoms affecting different organ systems. Postgenomic omics technologies offer the promise to understand the changes in proteome, phosphoproteome, and phosphorylation-based signaling in MPS IH/S. Accordingly, we report here a large dataset and the proteomic and phosphoproteomic analyses of fibroblasts derived from patients with MPS IH/S (n = 8) and healthy individuals (n = 8). We found that protein levels of key lysosomal enzymes such as cathepsin D, prosaposin, arylsulfatases (arylsulfatase A and arylsulfatase B), and IDUA were downregulated. We identified 16,693 unique phosphopeptides, corresponding to 4,605 proteins, in patients with MPS IH/S. We found that proteins related to the cell cycle, mitotic spindle assembly, apoptosis, and cytoskeletal organization were differentially phosphorylated in MPS IH/S. We identified 12 kinases that were differentially phosphorylated, including hyperphosphorylation of cyclin-dependent kinases 1 and 2, hypophosphorylation of myosin light chain kinase, and calcium/calmodulin-dependent protein kinases. Taken together, the findings of the present study indicate significant alterations in proteins involved in cytoskeletal changes, cellular dysfunction, and apoptosis. These new observations significantly contribute to the current understanding of the pathophysiology of MPS IH/S specifically, and the molecular mechanisms involved in the storage of GAGs in MPS more generally. Further translational clinical omics studies are called for to pave the way for diagnostics and therapeutics innovation for patients with MPS IH/S.

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基于质谱的蛋白质组学和磷蛋白组学分析揭示了赫勒-谢伊综合征的变化
Hurler-Scheie 综合征(MPS IH/S)又称 I-H/S 型粘多糖病(MPS IH/S),是一种溶酶体贮积症,由于缺乏α-L-酰基尿苷酸酶(IDUA),导致糖胺聚糖(GAGs)在各种组织中蓄积,从而引起影响不同器官系统的各种症状。后基因组全息技术为了解 MPS IH/S 中蛋白质组、磷酸化蛋白质组和基于磷酸化的信号转导的变化提供了希望。因此,我们在此报告了一个大型数据集,以及对来自 MPS IH/S 患者(n = 8)和健康人(n = 8)的成纤维细胞进行的蛋白质组和磷酸化蛋白质组分析。我们发现,关键溶酶体酶(如 cathepsin D、prosaposin、芳基硫酸酯酶(芳基硫酸酯酶 A 和芳基硫酸酯酶 B)和 IDUA)的蛋白水平下调。我们在 MPS IH/S 患者中鉴定出 16,693 个独特的磷酸肽,对应 4,605 个蛋白质。我们发现,与细胞周期、有丝分裂纺锤体组装、细胞凋亡和细胞骨架组织有关的蛋白质在 MPS IH/S 中的磷酸化程度不同。我们发现了12种不同程度磷酸化的激酶,包括细胞周期蛋白依赖性激酶1和2的过度磷酸化、肌球蛋白轻链激酶和钙/钙调蛋白依赖性蛋白激酶的低磷酸化。总之,本研究的结果表明,参与细胞骨架变化、细胞功能障碍和细胞凋亡的蛋白质发生了显著变化。这些新的观察结果极大地促进了目前对 MPS IH/S 具体病理生理学的理解,以及对 MPS 中更广泛的 GAGs 储存所涉及的分子机制的理解。我们需要进一步开展转化临床全息研究,为 MPS IH/S 患者的诊断和治疗创新铺平道路。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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