Naylor S, Ji Q, Johnson K L, Tomlinson A J, Kieper W C, Jameson S C
Biomedical Mass Spectrometry Facility and Department of Biochemistry and Molecular Biology, Mayo Clinic, Rochester, MN 55905, USA.
Electrophoresis. 1998 Sep;19(12):2207-12. doi: 10.1002/elps.1150191227.
Sequence analysis of antigenic major histocompatibility complex (MHC) class I peptides requires minimizing sample loss and enhancing mass spectrometric sensitivity. In order to facilitate such analyses, we have coupled on-line membrane preconcentration-capillary electrophoresis (mPC-CE) with microspray mass spectrometry (mPC-CE-microMS) and tandem mass spectrometry (mPC-CE-microMS/MS). Specifically, cell lysate from approximately 10(9) EG-7 mouse tumor cells was immunoprecipitated and the released MHC class I peptides were subjected to reverse-phase HPLC. An HPLC fraction containing antigenic peptide(s) shown to induce T-cell stimulation was subjected to mPC-CE-microMS. Approximately 10 microL (from 100 microL) of the fraction was pressure-injected and concentrated on a styrenedivinylbenzene (SDB) impregnated membrane. The peptides were eluted from the membrane with approximately 100 nL of 80% methanol, sandwiched between a leading stacking buffer (LSB, also serving as CE separation medium) of approximately 110 nL of 0.1% acetic acid in 10% methanol, and a trailing stacking buffer (TSB) of approximately 110 nL of 0.1% NH4OH. On application of the CE voltage the peptides are subjected to moving boundary transient isotachophoresis and focused. The peptides were separated in a Polybrene-coated capillary with application of -20 kV in reverse polarity mode and subsequently sprayed via an emitter coupled to the CE capillary by a liquid junction containing a platinum wire. An ion at m/z 482.3 was detected and subjected to mPC-CE-microMS/MS and determined to be SIINFEKL, a peptide (OVA) known to be antigenic in the mouse model system. Sensitivity enhancement over conventional mPC-CE-MS and MS/MS was approximately 100-fold.
对抗原性主要组织相容性复合体(MHC)I类肽进行序列分析需要尽量减少样品损失并提高质谱灵敏度。为便于此类分析,我们将在线膜预浓缩-毛细管电泳(mPC-CE)与微喷雾质谱(mPC-CE-microMS)及串联质谱(mPC-CE-microMS/MS)联用。具体而言,对来自约10⁹个EG-7小鼠肿瘤细胞的细胞裂解物进行免疫沉淀,释放的MHC I类肽进行反相高效液相色谱分析。将含有显示可诱导T细胞刺激的抗原肽的高效液相色谱馏分进行mPC-CE-microMS分析。将约10微升(取自100微升)的馏分通过压力进样并浓缩在浸渍有苯乙烯-二乙烯基苯(SDB)的膜上。用约100纳升80%甲醇从膜上洗脱肽,夹在约110纳升含10%甲醇的0.1%乙酸的前沿堆积缓冲液(LSB,也用作CE分离介质)和约110纳升0.1%氢氧化铵的尾随堆积缓冲液(TSB)之间。施加CE电压后,肽进行移动边界瞬态等速电泳并聚焦。在涂有聚凝胺的毛细管中以-20 kV的反极性模式分离肽,随后通过含有铂丝的液接与CE毛细管相连的发射器进行喷雾。检测到质荷比为482.3的离子,并对其进行mPC-CE-microMS/MS分析,确定为SIINFEKL,这是一种在小鼠模型系统中已知具有抗原性的肽(OVA)。与传统的mPC-CE-MS和MS/MS相比,灵敏度提高了约100倍。