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探索性蛋白质组学分析表明,替代补体级联反应参与了原发性中枢神经系统血管炎。

Exploratory proteomic analysis implicates the alternative complement cascade in primary CNS vasculitis.

机构信息

From the Departments of Biochemistry and Biophysics (C.M.-B., H.R., H.A.S., K.C.Z., J.L.D.), Pharmaceutical Chemistry (G.M.K., A.Y.), Pathology and Laboratory Medicine (T.T.), and Neurology (S.A.J., V.C.D., J.M.G., M.R.W.), University of California, San Francisco; Department of Rheumatology/Immunology (R.A.H.-A., L.H.C.), Cleveland Clinic, OH; Department of Neurology (M.P.G.), Boston Children's Hospital, MA; Division of Neurology (J.M.C.), Connecticut Children's Medical Center, Hartford; Division of Rheumatology (A.G.S.), University of Pennsylvania, Philadelphia; Kaiser Permanente (J.F.M.), San Francisco Medical Center; UCSF Weill Institute for Neurosciences (S.A.J., V.C.D., J.M.G., M.R.W.); and Chan Zuckerberg Biohub (J.L.D.), San Francisco, CA.

出版信息

Neurology. 2019 Jul 30;93(5):e433-e444. doi: 10.1212/WNL.0000000000007850. Epub 2019 Jul 3.

Abstract

OBJECTIVE

To identify molecular correlates of primary angiitis of the CNS (PACNS) through proteomic analysis of CSF from a biopsy-proven patient cohort.

METHODS

Using mass spectrometry, we quantitatively compared the CSF proteome of patients with biopsy-proven PACNS (n = 8) to CSF from individuals with noninflammatory conditions (n = 11). Significantly enriched molecular pathways were identified with a gene ontology workflow, and high confidence hits within enriched pathways (fold change >1.5 and concordant Benjamini-Hochberg-adjusted < 0.05 on DeSeq and test) were identified as differentially regulated proteins.

RESULTS

Compared to noninflammatory controls, 283 proteins were differentially expressed in the CSF of patients with PACNS, with significant enrichment of the complement cascade pathway (C4-binding protein, CD55, CD59, properdin, complement C5, complement C8, and complement C9) and neural cell adhesion molecules. A subset of clinically relevant findings were validated by Western blot and commercial ELISA.

CONCLUSIONS

In this exploratory study, we found evidence of deregulation of the alternative complement cascade in CSF from biopsy-proven PACNS compared to noninflammatory controls. More specifically, several regulators of the C3 and C5 convertases and components of the terminal cascade were significantly altered. These preliminary findings shed light on a previously unappreciated similarity between PACNS and systemic vasculitides, especially anti-neutrophil cytoplasmic antibody-associated vasculitis. The therapeutic implications of this common biology and the diagnostic and therapeutic utility of individual proteomic findings warrant validation in larger cohorts.

摘要

目的

通过对经活检证实的患者队列的 CSF 进行蛋白质组学分析,确定原发性中枢神经系统血管炎(PACNS)的分子相关性。

方法

使用质谱法,我们定量比较了经活检证实的 PACNS 患者(n=8)和非炎症性疾病患者(n=11)的 CSF 蛋白质组。使用基因本体论工作流程鉴定显著富集的分子途径,并通过 DeSeq 和 t 检验鉴定富集途径内的高置信度命中(倍数变化>1.5,Benjamini-Hochberg 调整的<0.05),作为差异调节蛋白。

结果

与非炎症性对照相比,PACNS 患者的 CSF 中有 283 种蛋白质表达差异,补体级联途径(C4 结合蛋白、CD55、CD59、备解素、补体 C5、补体 C8 和补体 C9)和神经细胞黏附分子显著富集。通过 Western blot 和商业 ELISA 验证了部分临床相关发现。

结论

在这项探索性研究中,我们发现与非炎症性对照相比,活检证实的 PACNS 患者 CSF 中替代补体级联失调的证据。更具体地说,C3 和 C5 转化酶的几个调节剂以及末端级联的成分发生了显著改变。这些初步发现揭示了 PACNS 和系统性血管炎之间以前未被认识到的相似性,特别是抗中性粒细胞胞质抗体相关血管炎。这种共同生物学的治疗意义以及个别蛋白质组学发现的诊断和治疗应用价值需要在更大的队列中进行验证。

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