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Dataset generated using hyperplexing and click chemistry to monitor temporal dynamics of newly synthesized macrophage secretome post infection by mycobacterial strains

机译:使用过热剂生成的数据集,然后单击化学以监测新合成的巨噬细胞沉淀后的颞噬菌体菌株的时间动态

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Here we provide data for SILAC and iTRAQ based hyperplexing combined with BONCAT based click chemistry for selective enrichment of newly synthesized proteins secreted by THP1 macrophages at various time points after infection with four different strains of Mycobacterium tuberculosis . The macrophages were infected with H37Ra, H37Rv, BND433 and JAL2287 strains of M. tuberculosis. Newly-synthesized secreted host proteins were observed, starting from six hours post-infection till 26 h, at 4 h intervals. We have combined BONCAT with hyperplexing (18-plex), which blends SILAC and iTRAQ, for the first time. Two sets of triplex SILAC were used to encode the strains of M. tuberculosis - H37Ra & H37Rv in one and BND433 & JAL2287 in another with a control in each. BONCAT was used to enrich the secretome for newly synthesized proteins while 6-plex iTRAQ labeling was employed to quantify the temporal changes in the captured proteome. Each set of 18-plex was run in 4 MS replicates with two linear and two non-linear separation modes. This new variant of hyperplexing method, combining triplex SILAC with 6-plex iTRAQ, achieves 18-plex quantitation in a single MS run. Hyperplexing enables large scale spatio-temporal systems biology studies where large number of samples can be processed simultaneously and in quantitative manner. Data are available via ProteomeXchange with identifier ProteomeXchange: PXD004281 .
机译:在这里,我们提供基于氧化硅酸和Itraq的超键合的数据,与Boncat基于Boncat基于Boncat的单击化学,以在用四种不同的分枝杆菌菌株感染后,在各种时间点在各种时间点中选择性富集的新合成蛋白质。巨噬细胞用H37RA,H37RV,BND433和JAL2287菌株感染M.Tuberculosis的菌株。观察到新合成的分泌宿主蛋白,从感染后六小时开始,直至26小时,以4小时间隔。我们首次将Boncat与Hyperplex(18-plex)混合,这是第一次混合Silac和Itraq。使用两组三链氧化硅酸在一个和BND433&JAL2287中编码M.Tuberculosis - H37RA和H37RV的菌株,在另一个中,在另一个中的控制中的对照。 Boncat用于丰富新合成蛋白的秘密,而6-Plex Itraq标记用于量化捕获蛋白质组的时间变化。每组18-plex在4毫秒运行,具有两个线性和两个非线性分离模式。这种用于6-Plex ITRAQ的Tiplex Silac与6-Plex Itraq结合的新变种,在单个MS运行中实现了18-Plex定量。过度快速使能大规模的时空系统生物学研究,其中可以同时处理大量样品并以定量方式处理。数据可通过Proteomexchange提供标识符Proteomexchange:PXD004281。

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