Waanders Leonie F, Hanke Stefan, Mann Matthias
Proteomics and Signal Transduction, Max-Planck Institute for Biochemistry, Martinsried, Germany.
J Am Soc Mass Spectrom. 2007 Nov;18(11):2058-64. doi: 10.1016/j.jasms.2007.09.001. Epub 2007 Sep 8.
Stable isotope labeling by amino acids in cell culture (SILAC) has become a popular labeling strategy for peptide quantitation in proteomics experiments. If the SILAC technology could be extended to intact proteins, it would enable direct quantitation of their relative expression levels and of the degree of modification between different samples. Here we show through modeling and experiments that SILAC is suitable for intact protein quantitation and top-down characterization. When SILAC-labeling lysine and/or arginine, peaks of light and heavy SILAC-doublets do not interfere with peaks of different charge states at least between 10 and 200 kDa. Unlike chemical methods, SILAC ensures complete incorporation-all amino acids are labeled. The isotopic enrichment of commercially available SILAC amino acids of nominally 95% to 98% shifts the mass difference between light and heavy state but does not lead to appreciably broadened peaks. We expressed labeled and unlabeled Grb2, a 28 kDa signaling protein, and showed that the two forms can be quantified with an average standard deviation of 6%. We performed on-line top-down sequencing of both forms in a hybrid linear ion trap orbitrap instrument. The quantized mass offset between fragments provided information about the number of labeled residues in the fragments, thereby simplifying protein identification and characterization.
细胞培养中氨基酸稳定同位素标记(SILAC)已成为蛋白质组学实验中用于肽定量的一种常用标记策略。如果SILAC技术能够扩展到完整蛋白质,那么就能够直接定量其相对表达水平以及不同样品之间的修饰程度。在此,我们通过建模和实验表明,SILAC适用于完整蛋白质定量和自上而下的表征。当用SILAC标记赖氨酸和/或精氨酸时,至少在10至200 kDa之间,轻、重SILAC双峰的峰不会干扰不同电荷状态的峰。与化学方法不同,SILAC可确保完全掺入——所有氨基酸均被标记。市售的标称95%至98%的SILAC氨基酸的同位素富集改变了轻、重状态之间的质量差异,但不会导致峰明显变宽。我们表达了标记和未标记的Grb2(一种28 kDa的信号蛋白),并表明两种形式的平均标准偏差为6%时可以进行定量。我们在混合线性离子阱轨道阱仪器中对两种形式进行了在线自上而下测序。片段之间的量化质量偏移提供了有关片段中标记残基数量的信息,从而简化了蛋白质鉴定和表征。