Che Fa-Yun, Fricker Lloyd D
Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
J Mass Spectrom. 2005 Feb;40(2):238-49. doi: 10.1002/jms.743.
Determining the relative levels of neuropeptides in two samples is important for many biological studies. An efficient, sensitive and accurate technique for relative quantitative analysis involves tagging the peptides in the two samples with isotopically distinct labels, pooling the samples and analyzing them using liquid chromatography/mass spectrometry (LC/MS). In this study, we compared two different sets of isotopic tags for analysis of endogenous mouse pituitary peptides: succinic anhydride with either four hydrogens or deuteriums and [3-(2,5-dioxopyrrolidin-1-yloxycarbonyl)propyl]trimethylammonium chloride with either nine hydrogens or deuteriums. These two labels react with amines and impart either a negative charge (succinyl) or a positive charge (4-trimethylammoniumbutyryl (TMAB)). Every endogenous mouse pituitary peptide labeled with the light TMAB reagent eluted from the C18 reversed-phase column at essentially the same time as the corresponding peptide labeled with the heavy reagent. Most of the peptides labeled with succinyl groups also showed co-elution of the heavy- and light-labeled forms on LC/MS. The mass difference between the heavy and light TMAB reagents (9 Da per label) was larger than that of the heavy and light succinyl labels (4 Da per label), and for some peptides the larger mass difference provided more accurate determination of the relative abundance of each form. Altogether, using both labels, 82 peptides were detected in Cpe(fat/fat) mouse pituitary extracts. Of these, only 16 were detected with both labels, 41 were detected only with the TMAB label and 25 were detected only with the succinyl label. A number of these peptides were de novo sequenced using low-energy collisional tandem mass spectrometry. Whereas the succinyl group was stable to the collision-induced dissociation of the peptide, the TMAB-labeled peptides lost 59 Da per H9 TMAB group. Several peptides identified in this analysis represent previously undescribed post-translational processing products of known pituitary prohormones. In conclusion, both succinyl and TMAB isotopic labels are useful for quantitative peptidomics, and together these two labels provide more complete coverage of the endogenous peptides.
确定两个样本中神经肽的相对水平对许多生物学研究都很重要。一种高效、灵敏且准确的相对定量分析技术是用同位素不同的标签标记两个样本中的肽段,将样本混合并使用液相色谱/质谱联用仪(LC/MS)进行分析。在本研究中,我们比较了两组不同的同位素标签用于分析内源性小鼠垂体肽:带有四个氢或氘的琥珀酸酐,以及带有九个氢或氘的[3-(2,5-二氧代吡咯烷-1-基氧羰基)丙基]三甲基氯化铵。这两种标签与胺反应,分别赋予负电荷(琥珀酰基)或正电荷(4-三甲基铵丁酰基(TMAB))。每个用轻质量TMAB试剂标记的内源性小鼠垂体肽从C18反相柱上洗脱的时间与用重质量试剂标记的相应肽段基本相同。大多数用琥珀酰基标记的肽段在LC/MS上也显示出重标记和轻标记形式的共洗脱。重质量和轻质量TMAB试剂之间的质量差(每个标签9 Da)大于重质量和轻质量琥珀酰标签之间的质量差(每个标签4 Da),对于一些肽段,较大的质量差能更准确地确定每种形式的相对丰度。总共,使用这两种标签在Cpe(fat/fat)小鼠垂体提取物中检测到82种肽段。其中,只有16种肽段能用两种标签都检测到,41种肽段仅能用TMAB标签检测到,25种肽段仅能用琥珀酰标签检测到。使用低能量碰撞串联质谱对其中一些肽段进行了从头测序。琥珀酰基对肽段的碰撞诱导解离稳定,而TMAB标记的肽段每个H9 TMAB基团会损失59 Da。在该分析中鉴定出的几种肽段代表了已知垂体前体激素以前未描述的翻译后加工产物。总之,琥珀酰基和TMAB同位素标签都可用于定量肽组学,这两种标签共同提供了对内源性肽段更完整的覆盖。