Farm Animal Genetic Resources Exploration and Innovation Key Laboratory of Sichuan Province, Sichuan Agricultural University, Chengdu, P. R. China.
College of Management, Sichuan Agricultural University, Chengdu, P. R. China.
Anim Biotechnol. 2023 Apr;34(2):122-133. doi: 10.1080/10495398.2021.1941071. Epub 2021 Jul 8.
Skeletal muscle also plays a vital role in regulating the movement energy storage and health of metabolism. In order to investigate the expression profile of protein and phosphor-proteins in chicken skeletal muscle during embryonic development, we performed phosphor-proteomics analysis by label-free and TiO enrichment strategy in chicken leg muscle tissues of at embryonic age embryo day 7(E7), E12, E17 and 3-day post-hatch (D3). The study led to the identification of 4332 proteins in the proteome and 1043 phosphorylation modification sites in the phosphorylated proteome, corresponding to 718 proteins (FC ≥ 2 or FC ≤ 0.5 and < 0.05). The DEP-associated biological processes were involved in Focal adhesion, Glycolysis/gluconeogenesis, Arginine and proline metabolism by KEGG analysis. PPI analyses revealed that these DEPs TNNC1, TNNC2, TNNT2, TNNT3 and phosphorylated DEPs MYLPF interacted with involved pathways. Integrative analysis of proteome and phosphoproteome data found 324 common proteins, corresponding to 521 modification sites and Focal adhesion was the only pathway significantly enriched. These results provide a basis for further understanding the proteome and phosphoproteome and their regulatory biochemical pathways during the development of embryonic chicken skeletal muscle.
骨骼肌在调节运动、能量储存和代谢健康方面也起着至关重要的作用。为了研究鸡胚胎发育过程中骨骼肌中蛋白质和磷酸化蛋白质的表达谱,我们采用无标记和 TiO2 富集策略,对胚胎第 7 天(E7)、E12、E17 和出壳后 3 天(D3)的鸡腿肌组织进行了磷酸化蛋白质组学分析。该研究鉴定了鸡骨骼肌蛋白质组中的 4332 种蛋白质和磷酸化蛋白质组中的 1043 个磷酸化修饰位点,分别对应 718 种蛋白质(FC≥2 或 FC≤0.5 且 <0.05)。通过 KEGG 分析,差异表达蛋白(DEP)相关的生物学过程涉及焦点黏附、糖酵解/糖异生、精氨酸和脯氨酸代谢。PPI 分析表明,这些 DEP 蛋白 TNNC1、TNNC2、TNNT2、TNNT3 和磷酸化 DEP 蛋白 MYLPF 与参与的途径相互作用。蛋白质组和磷酸化蛋白质组的综合分析发现了 324 个共同的蛋白质,对应 521 个修饰位点,焦点黏附是唯一显著富集的途径。这些结果为进一步了解鸡胚胎骨骼肌发育过程中蛋白质组和磷酸化蛋白质组及其调节的生化途径提供了依据。