JAM Conseil, Neuilly-sur-Seine, France.
Department of Animal Science, AU-Foulum, Aarhus University, 8830 Tjele, Denmark.
J Proteomics. 2019 Apr 15;197:1-13. doi: 10.1016/j.jprot.2019.02.005. Epub 2019 Feb 11.
The present review covers proteomics discoveries in farm animals using combinatorial peptide ligand libraries (CPLLs). These libraries enhance the identification of low-abundance proteins by compressing the dynamic range of the protein concentration. This technology can be applied in multiple biological fluids, such as plasma or serum, follicular and cerebrospinal fluids, urine, saliva, tears seminal fluid, milk whey and even lymph. The discovery of low-abundance proteins contributes to the continuous monitoring for animal pathologies, which allows early treatment and disease prevention. Additionally, evidencing rare proteins in animal products used for human consumption can help in assessing their nutritional properties and their positive or negative effects on human health. SIGNIFICANCE: Many investigations are made on the identification of proteins of farm animals. Protein concentration changes under abnormal stressful conditions as a sign of a first physiological reaction. Many of these protein changes are of low-abundance and their detection is dependent on enrichment technologies. These changes are potentially correlated with the type of stressor and may determine actions to preserve the animal welfare.
本综述涵盖了使用组合肽配体文库 (CPLL) 在农场动物中进行的蛋白质组学发现。这些文库通过压缩蛋白质浓度的动态范围来增强对低丰度蛋白质的鉴定。该技术可应用于多种生物体液,如血浆或血清、卵泡液和脑脊液、尿液、唾液、眼泪、精液、牛奶乳清,甚至淋巴液。低丰度蛋白质的发现有助于对动物病理学进行持续监测,从而可以进行早期治疗和疾病预防。此外,在用于人类消费的动物产品中发现稀有蛋白质有助于评估其营养特性以及对人类健康的积极或消极影响。意义:许多研究都是为了鉴定农场动物的蛋白质。蛋白质浓度在异常应激条件下发生变化,作为最初生理反应的标志。这些蛋白质变化中有许多是低丰度的,其检测依赖于富集技术。这些变化可能与应激源的类型相关,并可能决定保护动物福利的措施。