Department of Systems Biology, University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Department of Bioinformatics and Computational Biology, University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Proteome Sci. 2012 Sep 24;10(1):56. doi: 10.1186/1477-5956-10-56.
Protein extraction from formalin-fixed paraffin-embedded (FFPE) tissues is challenging due to extensive molecular crosslinking that occurs upon formalin fixation. Reverse-phase protein array (RPPA) is a high-throughput technology, which can detect changes in protein levels and protein functionality in numerous tissue and cell sources. It has been used to evaluate protein expression mainly in frozen preparations or FFPE-based studies of limited scope. Reproducibility and reliability of the technique in FFPE samples has not yet been demonstrated extensively. We developed and optimized an efficient and reproducible procedure for extraction of proteins from FFPE cells and xenografts, and then applied the method to FFPE patient tissues and evaluated its performance on RPPA.
Fresh frozen and FFPE preparations from cell lines, xenografts and breast cancer and renal tissues were included in the study. Serial FFPE cell or xenograft sections were deparaffinized and extracted by six different protein extraction protocols. The yield and level of protein degradation were evaluated by SDS-PAGE and Western Blots. The most efficient protocol was used to prepare protein lysates from breast cancer and renal tissues, which were subsequently subjected to RPPA. Reproducibility was evaluated and Spearman correlation was calculated between matching fresh frozen and FFPE samples.The most effective approach from six protein extraction protocols tested enabled efficient extraction of immunoreactive protein from cell line, breast cancer and renal tissue sample sets. 85% of the total of 169 markers tested on RPPA demonstrated significant correlation between FFPE and frozen preparations (p < 0.05) in at least one cell or tissue type, with only 23 markers common in all three sample sets. In addition, FFPE preparations yielded biologically meaningful observations related to pathway signaling status in cell lines, and classification of renal tissues.
With optimized protein extraction methods, FFPE tissues can be a valuable source in generating reproducible and biologically relevant proteomic profiles using RPPA, with specific marker performance varying according to tissue type.
由于福尔马林固定石蜡包埋(FFPE)组织中广泛的分子交联,从 FFPE 组织中提取蛋白质具有挑战性。反相蛋白质阵列(RPPA)是一种高通量技术,可检测多种组织和细胞来源中蛋白质水平和蛋白质功能的变化。它主要用于评估冷冻制剂或范围有限的 FFPE 基础研究中的蛋白质表达。该技术在 FFPE 样本中的重现性和可靠性尚未得到广泛证明。我们开发并优化了一种从 FFPE 细胞和异种移植物中提取蛋白质的高效且可重现的程序,然后将该方法应用于 FFPE 患者组织,并在 RPPA 上评估其性能。
本研究纳入了细胞系、异种移植物和乳腺癌及肾脏组织的新鲜冷冻和 FFPE 制剂。对 FFPE 细胞或异种移植物切片进行脱蜡并用六种不同的蛋白质提取方案进行提取。通过 SDS-PAGE 和 Western Blots 评估蛋白质降解的产量和水平。使用最有效的方案从乳腺癌和肾脏组织制备蛋白质裂解物,然后将其进行 RPPA。评估了重现性,并计算了匹配的新鲜冷冻和 FFPE 样本之间的 Spearman 相关性。在所测试的六种蛋白质提取方案中,最有效的方法能够有效地从细胞系、乳腺癌和肾脏组织样本中提取免疫反应性蛋白质。在至少一种细胞或组织类型中,169 个标志物中的 85%在 FFPE 和冷冻制剂之间表现出显著相关性(p < 0.05),只有 23 个标志物在所有三种样本集中均存在。此外,FFPE 制剂在细胞系中产生了与途径信号状态相关的生物学上有意义的观察结果,并对肾脏组织进行了分类。
通过优化蛋白质提取方法,FFPE 组织可以成为使用 RPPA 生成可重现且具有生物学相关性的蛋白质组学图谱的有价值的来源,具体的标记物性能根据组织类型而有所不同。