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首页> 外文期刊>Journal of proteome research >Subset of Kappa and Lambda Germline Sequences Result in Light Chains with a Higher Molecular Mass Phenotype
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Subset of Kappa and Lambda Germline Sequences Result in Light Chains with a Higher Molecular Mass Phenotype

机译:Kappa和Lambda胚系序列的子集导致分子质量表型较高的轻链

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In our previous work, we showed that electrospray ionization of intact polydonal kappa and lambda light chains isolated from normal serum generates two distinct, Gaussian-shaped, molecular mass distributions representing the light-chain repertoire. During the analysis of a large (>100) patient sample set, we noticed a low-intensity molecular mass distribution with a mean of approximately 24 250 Da, roughly 800 Da higher than the mean of the typical kappa molecular-mass distribution mean of 23 450 Da. We also observed distinct clones in this region that did not appear to contain any typical post-translational modifications that would account for such a large mass shift. To determine the origin of the high molecular mass clones, we performed de novo bottom-up mass spectrometry on a purified IgM monoclonal light chain that had a calculated molecular mass of 24 275.03 Da. The entire sequence of the monoclonal light chain was determined using multienzyme digestion and de novo sequence-alignment software and was found to belong to the germline allele IGKV2-30. The alignment of kappa germline sequences revealed ten IGKV2 and one IGKV4 sequences that contained additional amino acids in their CDR1 region, creating the high-molecular-mass phenotype. We also performed an alignment of lambda germline sequences, which showed additional amino acids in the CDR2 region, and the FR3 region of functional germline sequences that result in a high-molecular-mass phenotype. The work presented here illustrates the ability of mass spectrometry to provide information on the diversity of light-chain molecular mass phenotypes in circulation, which reflects the germline sequences selected by the immunoglobulin-secreting B-cell population.
机译:在我们以前的工作中,我们显示了从正常血清中分离出来的完整多齿牙合κ和λ轻链的电喷雾电离产生了两个不同的,呈高斯型的分子质量分布,代表了轻链库。在分析大量(> 100个)患者样本集时,我们注意到平均分子量约为24 250 Da的低强度分子量分布,比典型的kappa分子质量分布平均值23的平均值高约800 Da 450大我们还观察到该区域中的独特克隆似乎没有包含任何典型的翻译后修饰,而这些修饰会导致如此大的质量偏移。为了确定高分子量克隆的来源,我们对纯度为24 275.03 Da的IgM单克隆轻链进行了从头开始的自下而上质谱分析。使用多酶消化和从头序列比对软件确定了单克隆轻链的整个序列,发现其属于种系等位基因IGKV2-30。 kappa种系序列的比对揭示了十个IGKV2和一个IGKV4序列,它们的CDR1区含有其他氨基酸,从而形成了高分子质量的表型。我们还进行了lambda种系序列的比对,该序列在CDR2区和功能性种系序列的FR3区中显示了其他氨基酸,从而导致了高分子质量的表型。此处介绍的工作说明了质谱技术能够提供有关循环中轻链分子质量表型多样性的信息的能力,这反映了分泌免疫球蛋白的B细胞群体选择的种系序列。

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