BIOSCOPE Research Group, LAQV, REQUIMTE, Department of Chemistry, Faculdade de Ciências e Tecnologia , Universidade NOVA de Lisboa , 2829-516 Caparica , Portugal.
PROTEOMASS Scientific Society , Madan Park, Rua dos Inventores , 2825-152 Caparica , Portugal.
J Proteome Res. 2019 Jul 5;18(7):2979-2986. doi: 10.1021/acs.jproteome.9b00248. Epub 2019 Jun 19.
An effective three-step proteomics workflow is proposed to overcome the pitfalls caused by polymers present in optimum cutting temperature (OCT)-embedded tissue during its preparation for mass spectrometry analysis. First, the OCT-embedded tissue biopsies are cleaned using ethanol and water in a sequential series of ultrasonic washes in an ultrasound bath (35 kHz ultrasonic frequency, 100% ultrasonic amplitude, 2 min of ultrasonic duty time). Second, a fast ultrasonic-assisted extraction of proteins is done using an ultrasonic probe (30 kHz ultrasonic frequency, 50% ultrasonic amplitude, 2 min of ultrasonic duty time, 1 mm diameter tip). Third, a rapid ultrasonic digestion of complex proteomes is performed using a microplate horn assembly device (20 kHz ultrasonic frequency, 25% ultrasonic amplitude, 4 min of ultrasonic duty time). As a proof of concept, the new workflow was applied to human normal and tumor kidney biopsies including chromophobe renal cell carcinomas (chRCCs) and renal oncocytomas (ROs). A successful cluster of proteomics profiles was obtained comprising 511 and 172 unique proteins found in chRCC and RO samples, respectively. The new method provides high sample throughput and comprehensive protein recovery from OCT samples.
提出了一种有效的三步蛋白质组学工作流程,以克服在最佳切割温度 (OCT) 包埋组织准备进行质谱分析时由聚合物引起的陷阱。首先,将 OCT 包埋的组织活检在超声浴中使用乙醇和水进行一系列连续的超声清洗(35 kHz 超声频率、100%超声幅度、2 分钟超声工作时间)。其次,使用超声探头进行快速超声辅助蛋白质提取(30 kHz 超声频率、50%超声幅度、2 分钟超声工作时间、1 毫米直径探头)。第三,使用微孔板喇叭组件装置进行快速超声消化复杂蛋白质组(20 kHz 超声频率、25%超声幅度、4 分钟超声工作时间)。作为概念验证,该新工作流程应用于人类正常和肿瘤肾脏活检,包括嫌色性肾细胞癌(chRCC)和肾嗜酸细胞瘤(RO)。获得了成功的蛋白质组学图谱簇,其中包含分别在 chRCC 和 RO 样本中发现的 511 和 172 种独特蛋白质。该新方法提供了从 OCT 样品中进行高通量样本处理和全面蛋白质回收的能力。