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首页> 外文期刊>Scientific reports. >Improved phosphoproteomic analysis for phosphosignaling and active-kinome profiling in Matrigel-embedded spheroids and patient-derived organoids
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Improved phosphoproteomic analysis for phosphosignaling and active-kinome profiling in Matrigel-embedded spheroids and patient-derived organoids

机译:改进的磷酸化蛋白质组学分析,用于基质胶包埋的球体和患者来源的类器官中的磷酸化信号和活性基因组图谱

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Many attempts have been made to reproduce the three-dimensional (3D) cancer behavior. For that purpose, Matrigel, an extracellular matrix from Engelbreth-Holm-Swarm mouse sarcoma cell, is widely used in 3D cancer models such as scaffold-based spheroids and patient-derived organoids. However, severe ion suppression caused by contaminants from Matrigel hampers large-scale phosphoproteomics. In the present study, we successfully performed global phosphoproteomics from Matrigel-embedded spheroids and organoids. Using acetone precipitations of tryptic peptides, we identified more than 20,000 class 1 phosphosites from HCT116 spheroids. Bioinformatic analysis revealed that phosphoproteomic status are significantly affected by the method used for the recovery from the Matrigel, i.e., Dispase or Cell Recovery Solution. Furthermore, we observed the activation of several phosphosignalings only in spheroids and not in adherent cells which are coincident with previous study using 3D culture. Finally, we demonstrated that our protocol enabled us to identify more than 20,000 and nearly 3,000 class 1 phosphosites from 1.4?mg and 150?μg of patient-derived organoid, respectively. Additionally, we were able to quantify phosphosites with high reproducibility (r?=?0.93 to 0.95). Our phosphoproteomics protocol is useful for analyzing the phosphosignalings of 3D cancer behavior and would be applied for precision medicine with patient-derived organoids.
机译:已经进行了许多尝试来再现三维(3D)癌症行为。为此,Matrigel是Engelbreth-Holm-Swarm小鼠肉瘤细胞的细胞外基质,已广泛用于3D癌症模型,例如基于支架的球体和患者来源的类器官。但是,由于Matrigel的污染物引起的严重离子抑制作用会阻碍大规模的磷酸化蛋白质组学研究。在本研究中,我们成功地从嵌入了Matrigel的球体和类器官中进行了整体磷酸化蛋白质组学。使用丙酮沉淀的胰蛋白酶肽,我们从HCT116球体中鉴定了20,000多个1类磷酸位点。生物信息学分析表明,磷酸化蛋白质组状态受到从基质胶回收的方法即分散酶或细胞回收液的影响很大。此外,我们仅在球体中观察到了几个磷酸信号的激活,而在贴壁细胞中却没有,这与使用3D培养的先前研究相吻合。最后,我们证明了我们的方案使我们能够分别从1.4?mg和150?μg的患者类器官中识别出20,000多个和近3,000个1类磷酸位。另外,我们能够以高再现性定量磷酸位点(r = 0.93至0.95)。我们的磷酸化蛋白质组学协议可用于分析3D癌症行为的磷酸化信号,并将用于具有患者源性类器官的精密医学。

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