PO.CH02.01 · 化学
使用快速、高分辨率精确质谱法检测同时定量和发现血浆中癌症相关蛋白,为精准肿瘤学和药物发现提供见解
Simultaneous quantitation and discovery of cancer-related proteins in plasma using a fast, high-resolution accurate mass spectrometry-based assay provides insight into precision oncology and drug discovery
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中文摘要
癌症固有的异质性推动了重大的技术进步,以增强表征这一复杂疾病所需的详细研究——该疾病主要以不受控的变化为定义。为应对和治疗这种多方面变异性所做的努力,以对血浆的研究方式来执行——血浆是一种易于获取、富含生理状态信息的生物体液。这项工作旨在提出用于定量和发现血浆中已知癌症相关蛋白的稳健且标准化的方法。具体而言,我们的方法旨在减少各工作流程中的变异性和人工,并推动下一代血浆蛋白质组学和质谱方法在发现与开发研究中的采用。PQ500肽段按制造商说明制备,来自BioIVT公司的人血浆样本使用AccelerOme自动化平台消化并汇集作为样本基质。两项实验评估了hybrid-DIA的性能。第一项实验使用掺入汇集血浆的PQ500肽段,在SureQuant和tMS2 hybrid-DIA方法中测试了不同的靶向肽段数量(30–300)。第二项实验使用在Orbitrap Astral Zoom MS上分析的系列稀释液评估线性、检测限和定量限。LC-MS分析在配有EASY-Spray柱和优化梯度的Vanquish Neo UHPLC上进行,样本使用两种hybrid-DIA方法在Orbitrap Astral Zoom质谱仪上分析。该分析涵盖144种被鉴定为癌症相关的蛋白。关键抑癌基因包括TP53和PTEN,而主要致癌驱动因子如EGFR、ERBB2、KIT和SHH促进细胞增殖和存活。VEGFA、MMP2和MMP9等蛋白调控血管生成和转移,而PVR、VTCN1和B2M等免疫调节因子支持肿瘤免疫逃逸。代谢和氧化还原酶包括PKM2、LDHA和TXN驱动癌细胞代谢和应激适应。临床相关生物标志物——CEACAM5(CEA)、KLK3(PSA)、MUC16(CA125)、WFDC2(HE4)和MSLN——有助于诊断和监测。总体而言,这些蛋白涵盖了主要的癌症标志,包括增殖、血管生成、免疫逃逸、侵袭和代谢重编程,既代表已确立的治疗靶点,也代表新兴的治疗靶点。未来方向将利用基于质谱的蛋白质组学的独特能力,研究翻译后修饰,包括磷酸化和糖基化,它们在信号传导和癌症中至关重要。通过整合血浆蛋白质组学研究、可定量的参考肽段以及Orbitrap Astral Zoom质谱仪,我们旨在通过最大限度地减少这些动态模型中的变异性,来简化精准肿瘤学和药物发现。
查看英文原文 English abstract
The inherent heterogeneity of cancer has spurred significant technological advancements to enhance the detailed study required to characterize this complex disease, predominantly defined by uncontrolled changes. Efforts to address and treat this multi-faceted variability are executed as investigation of plasma - a readily accessible biological fluid rich in information regarding physiological states. This work seeks to present robust and standardized methods for the quantitation and discovery of known cancer-related proteins found in plasma. Specifically, our methods aim to reduce variability and labor across workflows and spur the adoption of next-generation plasma proteomic and mass spectrometry methods in discovery and development research. PQ500 peptides were prepared per manufacturer instructions, and human plasma samples from BioIVT Inc were digested using the AccelerOme automated platform and pooled as the sample matrix. Two experiments evaluated hybrid-DIA performance. The first tested different targeted peptide numbers (30-300) in SureQuant and tMS2 hybrid-DIA methods using PQ500 peptides spiked into pooled plasma. The second assessed linearity, limit of detection, and limit of quantification using serial dilutions analyzed on the Orbitrap Astral Zoom MS. LC-MS analysis was performed on a Vanquish Neo UHPLC with an EASY-Spray column and optimized gradients, with samples analyzed using both hybrid-DIA methods on the Orbitrap Astral Zoom mass spectrometer. This analysis spans 144 proteins identified as cancer-associated. Key tumor suppressors include TP53 and PTEN, while major oncogenic drivers such as EGFR, ERBB2, KIT, and SHH promote cell proliferation and survival. Proteins like VEGFA, MMP2, and MMP9 regulate angiogenesis and metastasis, and immune modulators such as PVR, VTCN1, and B2M support tumor immune evasion. Metabolic and redox enzymes including PKM2, LDHA, and TXN drive cancer cell metabolism and stress adaptation. Clinically relevant biomarkers-CEACAM5 (CEA), KLK3 (PSA), MUC16 (CA125), WFDC2 (HE4), and MSLN-aid in diagnosis and monitoring. Overall, these proteins cover major cancer hallmarks including proliferation, angiogenesis, immune escape, invasion, and metabolic reprogramming, representing both established and emerging therapeutic targets. Future directions will leverage the unique capabilities of mass spectrometry-based proteomics to investigate post-translational modifications, including phosphorylation and glycosylation, which are crucial in signaling and cancer. By integrating plasma proteomics studies, quantifiable reference peptides, and the Orbitrap Astral Zoom mass spectrometer, we aim to streamline precision oncology and drug discovery by minimizing variability in these dynamic models.
利益披露 Disclosure
D. Figueroa,
Thermo Fisher Scientific Employment.
Q. Li,
Thermo Fisher Scientific Employment.
J. Deyarmin,
Thermo Fisher Scientific Employment.
S. Steigerwald,
Thermo Fisher Scientific Employment.
S. Samra,
Thermo Fisher Scientific Employment.