Toxicology and Chemotherapy Unit, German Cancer Research Center (DKFZ), 69120 Heidelberg, Germany.
Molecular Structure Analysis, German Cancer Research Center (DKFZ), 69120 Heidelberg, Germany.
Exp Biol Med (Maywood). 2020 Apr;245(7):631-643. doi: 10.1177/1535370220910691. Epub 2020 Mar 4.
In normal cells, glycan binding proteins mediate various cellular processes upon recognition and binding to respective ligands. In tumor cells, these proteins have been associated with metastasis. Lactosyl-sepharose binding proteins (LSBPs) were isolated and identified in a workflow involving lactosyl affinity chromatography and label-free quantification mass spectrometry (LFQ MS). A binding study with monosaccharides was performed by microscale thermophoresis and nuclear magnetic resonance spectroscopy. Influence of galactose on LSBPs’ binding to the lactosyl resin was investigated by competitive affinity chromatography followed by LFQ MS. An analysis of amino acids with sugar binding motifs was searched using bioinformatics tools. The expression profiles of these proteins at the mRNA level, as determined by a chip array from a pancreatic ductal adenocarcinoma (PDAC) liver metastasis model, were used for evaluating their potential role in cancer progression. Proteomics data and their respective genes were analyzed by MaxQuant and Ingenuity Pathway Analysis. In total, 1295 LSBPs were isolated and identified from Suit2-007 human pancreatic adenocarcinoma cells. Interaction studies revealed that these proteins exhibit low to moderate affinity for monosaccharide sugars. Some of these LSBPs even showed reduced affinity after calcium depletion. Among the isolated proteins were annexins and galectins in addition to other families, with no history of binding lactosyl residues. A subset of LSBPs exhibited differential profiles in the pancreas, liver, and lung environments. These modulations may be related to tumor progression. In conclusion, we show that PDAC cells contain LSBPs, a subset of which binds galactose with calcium dependency. The differential expression of these proteins in a rat model highlights their value for diagnosis and as potential drug targets for PDAC therapy. Future work will be required to validate these findings in patient samples.
Interaction of glycan binding proteins with aberrantly expressed glycans in tumor environment is crucial for metastasis. Here, we established a work flow for investigating the presence of a subset of these proteins in PDAC cells, which bind to a lactosyl-sepharose resin. The resin had been designed to isolate proteins with lectin-like properties. The corresponding lactosyl-sepharose binding proteins (LSBPs) show affinity for galactose and other monosaccharides. A subset of the LSBPs shows also calcium dependency. The importance of these proteins is highlighted by their differential expression profiles in PDAC cells growing in primary (pancreas) and metastatic (liver and lung) organ sites. Based on their affinity for the lactosyl-resin and monosaccharides, LSBPs hold potential for PDAC diagnosis and as drug targets. This work has set the stage for further investigation of the occurrence and the role of LSBPs in patient samples using the newly established workflow.
在正常细胞中,糖结合蛋白在识别和结合相应配体后介导各种细胞过程。在肿瘤细胞中,这些蛋白质与转移有关。乳糖琼脂糖结合蛋白 (LSBP) 是通过涉及乳糖亲和层析和无标签定量质谱 (LFQ MS) 的工作流程分离和鉴定的。通过微量热泳动和核磁共振波谱法进行了单糖的结合研究。通过竞争性亲和层析和 LFQ MS 研究了半乳糖对半乳糖琼脂糖结合蛋白 (LSBP) 与乳糖树脂结合的影响。使用生物信息学工具搜索具有糖结合基序的氨基酸。通过胰腺导管腺癌 (PDAC) 肝转移模型的芯片阵列测定这些蛋白质在 mRNA 水平的表达谱,用于评估它们在癌症进展中的潜在作用。通过 MaxQuant 和 Ingnuity 通路分析对蛋白质组学数据及其相应基因进行分析。总共从 Suit2-007 人胰腺腺癌细胞中分离和鉴定了 1295 个 LSBPs。相互作用研究表明,这些蛋白质对单糖具有低到中等亲和力。其中一些 LSBPs 在钙耗尽后甚至表现出降低的亲和力。分离出的蛋白质除了其他家族外,还包括 annexins 和 galectins,它们没有结合乳糖残基的历史。LSBPs 的一部分在胰腺、肝脏和肺部环境中表现出不同的谱。这些调节可能与肿瘤进展有关。总之,我们表明 PDAC 细胞含有 LSBPs,其中一部分与钙依赖性的半乳糖结合。这些蛋白质在大鼠模型中的差异表达突出了它们在诊断中的价值,并作为 PDAC 治疗的潜在药物靶点。需要进一步的工作来验证这些在患者样本中的发现。
糖结合蛋白与肿瘤环境中异常表达的糖的相互作用对于转移至关重要。在这里,我们建立了一个工作流程,用于研究 PDAC 细胞中这些蛋白质子集的存在,这些蛋白质与乳糖琼脂糖树脂结合。该树脂旨在分离具有凝集素样特性的蛋白质。相应的乳糖琼脂糖结合蛋白 (LSBP) 对半乳糖和其他单糖具有亲和力。LSBP 的一部分也表现出钙依赖性。这些蛋白质的重要性通过它们在 PDAC 细胞中在原发性(胰腺)和转移性(肝和肺)器官部位生长时的差异表达谱突出显示。基于它们对半乳糖树脂和单糖的亲和力,LSBP 有可能用于 PDAC 诊断和作为药物靶点。这项工作为使用新建立的工作流程在患者样本中进一步研究 LSBPs 的发生和作用奠定了基础。