人类蛋白质组计划
蛋白质组
生物
DNA测序
噬菌体展示
计算生物学
肽库
免疫沉淀
蛋白质组学
基因组
人类基因组
抗体
遗传学
DNA
肽序列
基因
作者
H. Benjamin Larman,Zhenming Zhao,Uri Laserson,Mamie Z. Li,Alberto Ciccia,M. Angelica Martinez Gakidis,George M. Church,Santosh Kesari,Emily M LeProust,Nicole L. Solimini,Stephen J. Elledge
摘要
Larman et al. create a phage library containing >400,000 sequences encoding peptides that cover all open reading frames in the human genome. They then use this synthetic peptidome to discover novel autoantigens targeted by antibodies in the cerebrospinal fluid of individuals with a neurological autoimmune disease. Immune responses targeting self-proteins (autoantigens) can lead to a variety of autoimmune diseases. Identification of these antigens is important for both diagnostic and therapeutic reasons. However, current approaches to characterize autoantigens have, in most cases, met only with limited success. Here we present a synthetic representation of the complete human proteome, the T7 peptidome phage display library (T7-Pep), and demonstrate its application to autoantigen discovery. T7-Pep is composed of >413,000 36-residue, overlapping peptides that cover all open reading frames in the human genome, and can be analyzed using high-throughput DNA sequencing. We developed a phage immunoprecipitation sequencing (PhIP-Seq) methodology to identify known and previously unreported autoantibodies contained in the spinal fluid of three individuals with paraneoplastic neurological syndromes. We also show how T7-Pep can be used more generally to identify peptide-protein interactions, suggesting the broader utility of our approach for proteomic research.
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