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首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >A novel approach for the purification and proteomic analysis of pathogenic immunoglobulin free light chains from serum.
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A novel approach for the purification and proteomic analysis of pathogenic immunoglobulin free light chains from serum.

机译:一种从血清中纯化和蛋白质组学分析无病原性免疫球蛋白轻链的新方法。

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摘要

An excess of circulating monoclonal free immunoglobulin light chains (FLC) is common in plasma cell disorders. A subset of FLC, as amyloidogenic ones, possess intrinsic pathogenicity. Because of their complex purification, little is known on the biochemical features of serum FLC, possibly related to their pathogenic spectrum. We developed an immunopurification approach to isolate serum FLC from patients with monoclonal gammopathies, followed by proteomic characterization. Serum monoclonal FLC were detected and quantified by immunofixation and immunonephelometry. Immunoprecipitation was performed by serum incubation with agarose beads covalently linked to polyclonal anti-kappa or lambda FLC antibodies. Isolated FLC were analyzed by SDS-PAGE, 2D-PAGE, immunoblotting, mass spectrometry (MS). Serum FLC were immunoprecipitated from 15 patients with ALlambda amyloidosis (serum lambda FLC range: 98-2350mg/L), 5 with ALkappa amyloidosis and 1 with kappa light chain (LC) myeloma (kappa FLC range: 266-2660mg/L), and 3 controls. Monoclonal FLC were the prevalent eluted species in patients. On 2D-PAGE, both lambda and kappa FLC originated discrete spots with multiple pI isoforms. The nature of eluted FLC and coincidence with the LC sequence from the bone marrow clone was confirmed by MS, which also detected post-translational modifications, including truncation, tryptophan oxidation, cysteinylation, peptide dimerization. Serum FLC were purified in soluble form and adequate amounts for proteomics, which allowed studying primary sequence and detecting post-translational modifications. This method is a novel instrument for studying the molecular bases of FLC pathogenicity, allowing for the first time the punctual biochemical description of the circulating forms.
机译:在浆细胞疾病中,过量的循环单克隆游离免疫球蛋白轻链(FLC)很常见。 FLC的一部分,如淀粉样蛋白变性,具有内在的致病性。由于其复杂的纯化,对血清FLC的生化特征了解甚少,可能与其致病谱有关。我们开发了一种免疫纯化方法,可从患有单克隆血友病的患者中分离血清FLC,然后进行蛋白质组学表征。通过免疫固定和免疫比浊法检测和定量血清单克隆FLC。通过与共价连接至多克隆抗κ或λFLC抗体的琼脂糖珠进行血清温育来进行免疫沉淀。分离的FLC通过SDS-PAGE,2D-PAGE,免疫印迹,质谱(MS)分析。从15例ALlambda淀粉样变性病(血清lambda FLC范围:98-2350mg / L),5例ALkappa淀粉样病和1例κ轻链(LC)骨髓瘤(kappa FLC范围:266-2660mg / L)中免疫沉淀血清FLC。 3个控件。单克隆FLC是患者中最常见的洗脱物种。在2D-PAGE上,λ和κFLC均产生具有多个pI亚型的离散斑点。 MS证实了洗脱的FLC的性质以及与骨髓克隆LC序列的一致性,MS还检测到翻译后修饰,包括截短,色氨酸氧化,半胱氨酰化,肽二聚化。将血清FLC纯化为可溶形式,并以足够的量用于蛋白质组学,从而可以研究一级序列并检测翻译后修饰。该方法是研究FLC致病性分子基础的新颖工具,首次实现了循环形式的准时生化描述。

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