Kokubu Makiko, Ishihama Yasushi, Sato Toshitaka, Nagasu Takeshi, Oda Yoshiya
Laboratory of Seeds Finding Technology, Eisai Co., Ltd., Tokodai 5-1-3, Tsukuba, Ibaraki 300-2635, Japan.
Anal Chem. 2005 Aug 15;77(16):5144-54. doi: 10.1021/ac050404f.
We have developed a simple, highly specific enrichment procedure for phosphopeptides, by increasing the specificity of an immobilized metal affinity column (IMAC) without using any chemical reaction. The method employs a biphasic IMAC-C18 tip, in which IMAC beads are packed on an Empore C18 disk in a 200-microL pipet tip. Phosphopeptides are separated from non-phosphopeptides on the IMAC in an optimized solvent without any chemical reaction, then desorbed from the IMAC using a phosphate buffer, reconcentrated, and desalted on the C18 disk. The increase in selectivity was achieved by (a) using a strong acid to discriminate phosphates from carboxyl groups of peptides and (b) using a high concentration of acetonitrile to remove hydrophobic non-phosphopeptides. The entire procedure was optimized by using known phosphoproteins such as Akt1 kinase and protein kinase A. Although it was difficult to detect phosphopeptides in MALDI-MS spectra of tryptic peptide mixtures before enrichment, after the IMAC procedure, we could successfully detect phosphopeptides with almost no non-phosphopeptides. Next, we constructed an array of IMAC-IMAC/C18 tips, such that number of arrayed tips on a 96-well plate could easily be changed depending on the loading amount of sample. Applying this approach to mouse forebrain resulted in the identification of 162 phosphopeptides (166 phosphorylation sites) from 135 proteins using nano-LC/MS.
我们开发了一种简单、高度特异的磷酸肽富集方法,通过提高固定化金属亲和柱(IMAC)的特异性,且不使用任何化学反应。该方法采用双相IMAC-C18吸头,其中IMAC珠粒装填在200微升移液器吸头中的Empore C18盘上。在优化的溶剂中,磷酸肽在IMAC上与非磷酸肽分离,无需任何化学反应,然后用磷酸盐缓冲液从IMAC上解吸,再浓缩,并在C18盘上去盐。选择性的提高是通过(a)使用强酸区分肽的磷酸基团和羧基,以及(b)使用高浓度乙腈去除疏水非磷酸肽来实现的。整个过程通过使用已知的磷蛋白如Akt1激酶和蛋白激酶A进行了优化。尽管在富集前很难在胰蛋白酶肽混合物的MALDI-MS谱图中检测到磷酸肽,但经过IMAC程序后,我们能够成功检测到几乎没有非磷酸肽的磷酸肽。接下来,我们构建了一个IMAC-IMAC/C18吸头阵列,这样96孔板上阵列吸头的数量可以根据样品的上样量轻松改变。将这种方法应用于小鼠前脑,使用纳升液相色谱/质谱从135种蛋白质中鉴定出162个磷酸肽(166个磷酸化位点)。