University of Glasgow, Glasgow, UK.
University of Veterinary Medicine and Pharmacy in Košice, Košice, Slovakia.
Rapid Commun Mass Spectrom. 2023 May 30;37(10):e9497. doi: 10.1002/rcm.9497.
The study of protein synthesis in farm animals is uncommon despite its potential to increase knowledge about metabolism and discover new biomarkers of health and growth status. The present study describes a novel dynamic proteomics approach for the measurement of protein fractional synthesis rate (FSR) in broiler chickens.
Chickens received a 10 g/kg oral dose of H O at day 21 of their life. Body water H abundance was measured in plasma samples using a portable Fourier transform infrared spectrometer. Free and protein-bound amino acids (AAs) were isolated and had their H enrichment measured by gas chromatography with mass spectrometry (GC/MS). Peptide H enrichment was measured by proteomics analysis of plasma and muscle samples. Albumin, fibrinogen and muscle protein FSR were calculated from GC/MS and proteomics data.
Ala appeared to be more enriched at the site of protein synthesis than in the AA free pools. Glu was found to be the AA closest to isotopic equilibrium between the different AA pools. Glu was used as an anchor to calculate n(AA) values necessary for chicken protein FSR calculation in dynamic proteomics studies. FSR values calculated using proteomics data and GC/MS data showed good agreement as evidenced by a Bland-Altman residual plot.
A new dynamic proteomics approach for the measurement of broiler chicken individual protein FSR based on the administration of a single H O oral bolus has been developed and validated. The proposed approach could facilitate new immunological and nutritional studies on free-living animals.
尽管研究动物的蛋白质合成具有增加代谢知识和发现新的健康和生长状态生物标志物的潜力,但在农场动物中对其进行研究却很少。本研究描述了一种新的动态蛋白质组学方法,用于测量肉鸡的蛋白质合成分数率(FSR)。
鸡在生命的第 21 天接受了 10g/kg 的 H O 口服剂量。使用便携式傅里叶变换红外光谱仪测量血浆样品中的体水 H 丰度。分离游离和蛋白质结合氨基酸(AA),并用气相色谱-质谱联用仪(GC/MS)测量其 H 丰度。通过对血浆和肌肉样品的蛋白质组学分析测量肽 H 丰度。根据 GC/MS 和蛋白质组学数据计算白蛋白、纤维蛋白原和肌肉蛋白 FSR。
Ala 在蛋白质合成部位似乎比游离 AA 池更丰富。发现 Glu 是不同 AA 池之间达到同位素平衡的最接近 AA。在动态蛋白质组学研究中,使用 Glu 作为计算鸡蛋白质 FSR 所需 n(AA)值的锚点。通过蛋白质组学数据和 GC/MS 数据计算的 FSR 值具有良好的一致性,这一点可以通过 Bland-Altman 残差图得到证明。
已经开发并验证了一种新的基于单次 H O 口服冲击的测量肉鸡个体蛋白质 FSR 的动态蛋白质组学方法。该方法可以促进对自由生活动物的新的免疫和营养研究。