Department of Laboratory Medicine, The Second Affiliated Hospital of Guangzhou University of Chinese Medicine, Guangzhou, China; Second Clinical Medical College, Guangzhou University of Chinese Medicine, Guangzhou, 510120, China.
Second Clinical Medical College, Guangzhou University of Chinese Medicine, Guangzhou, 510120, China.
Protein Expr Purif. 2021 Feb;178:105785. doi: 10.1016/j.pep.2020.105785. Epub 2020 Nov 3.
Isotope-labeled proteins are expected to be used as internal standard proteins in the field of protein quantification by isotope dilution mass spectrometry (ID/MS). To achieve the absolute quantification of Cystatin C (Cys C) based on ID/MS, we aims to obtain N isotope-labeled recombinant Cys C (N-Cys C) protein. Firstly, the Cys C gene was optimized based on the preferred codons of Escherichia coli, and inserted into the pET-28a(+) expression plasmid. Then, the plasmid was transformed into TOP10 and BL21 strains, and N-Cys C was expressed in M9 medium using N as the only nitrogen source. N-Cys C was detected by SDS-PAGE, protein immunoblotting and matrix-assisted laser desorption/ionization-time of flight mass spectrometry (MALDI-TOF MS). The characteristic peptides obtained from N-Cys C were analyzed by a Q Exactive Plus MS system. Results showed that 53.06% of the codons were optimized. The codon adaptation index of the Cys C genes increased from 0.31 to 0.95, and the GC content was adjusted from 64.85% to 54.88%. The purity of N-Cys C was higher than 95%. MALDI-TOF MS analysis showed that the m/z of N-Cys C had changed from 13 449 to 14 850. The characteristic peptides showed that 619.79 m/z (M+2H) was the parent ion of N-Cys C and that the secondary ions of N-labeled peptides from y to y were 616.27 m/z, 716.33 m/z, 788.39 m/z, 936.43 m/z, and 1052.46 m/z, respectively. In conclusion, we successfully expressed, purified and identified of N-Cys C protein in Escheichia coli intended for absolute quantification using ID/MS.
同位素标记蛋白有望在基于同位素稀释质谱法(ID/MS)的蛋白定量领域被用作内标蛋白。为了实现基于 ID/MS 的胱抑素 C(Cys C)的绝对定量,我们旨在获得 N 同位素标记的重组 Cys C(N-Cys C)蛋白。首先,根据大肠杆菌的最优密码子对 Cys C 基因进行优化,并将其插入 pET-28a(+)表达质粒中。然后,将质粒转化至 TOP10 和 BL21 菌株中,使用 N 作为唯一氮源在 M9 培养基中表达 N-Cys C。通过 SDS-PAGE、蛋白质免疫印迹和基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)检测 N-Cys C。通过 Q Exactive Plus MS 系统分析从 N-Cys C 获得的特征肽。结果表明,有 53.06%的密码子被优化。Cys C 基因的密码子适应指数从 0.31 增加到 0.95,GC 含量从 64.85%调整到 54.88%。N-Cys C 的纯度高于 95%。MALDI-TOF MS 分析表明,N-Cys C 的 m/z 从 13449 变为 14850。特征肽表明,m/z 为 619.79(M+2H)的峰为 N-Cys C 的母离子,y 到 y 的 N 标记肽的二级离子分别为 616.27 m/z、716.33 m/z、788.39 m/z、936.43 m/z 和 1052.46 m/z。综上所述,我们成功地在大肠杆菌中表达、纯化和鉴定了 N-Cys C 蛋白,旨在用于基于 ID/MS 的绝对定量。