Bures E J, Courchesne P L, Douglass J, Chen K, Davis M T, Jones M D, McGinley M D, Robinson J H, Spahr C S, Sun J, Wahl R C, Patterson S D
Departments of Biochemistry and Genetics, Amgen, Thousand Oaks, CA, USA.
Proteomics. 2001 Jan;1(1):79-92. doi: 10.1002/1615-9861(200101)1:1<79::AID-PROT79>3.0.CO;2-8.
In an attempt to identify peptides that may be involved in the obese phenotype observed in CpEfat/CpEfat mice (deficient in Carboxypeptidase E, CpE) samples from fourteen neuroendocrine tissues in wild-type and CpEfat/CpEfat mice were obtained. Peptides were purified from these tissues and potential CpE substrate peptides were enriched using an anhydrotrypsin column that captures peptides with basic C-termini. Bound peptides were subjected to tryptic digestion and followed by liquid chromatography-mass spectrometry analysis. The relative levels of CpEfat/CpEfat versus wild-type peptides were determined by comparison of the ion intensities. Peptide ions elevated in the CpEfat/CpEfat samples were identified by targeted liquid chromatography-tandem mass spectrometry. From those ions, 27 peptides derived from known neuropeptides (including CpE substrates) were identified, together with another 25 peptides from proteins not known to be components of the neuropeptide processing pathway. The known CpE substrates identified included the recently discovered proSAAS, granin-like neuroendocrine peptide precursor that inhibits prohormone processing. The approach demonstrated the feasibility of using an affinity-based method for identifying differences in specific classes of peptides between normal and mutant mice.
为了鉴定可能与CpEfat/CpEfat小鼠(羧肽酶E,CpE缺陷)中观察到的肥胖表型有关的肽段,从野生型和CpEfat/CpEfat小鼠的14种神经内分泌组织中获取了样本。从这些组织中纯化肽段,并使用能捕获具有碱性C末端肽段的脱水胰蛋白酶柱富集潜在的CpE底物肽段。对结合的肽段进行胰蛋白酶消化,然后进行液相色谱-质谱分析。通过比较离子强度来确定CpEfat/CpEfat与野生型肽段的相对水平。通过靶向液相色谱-串联质谱法鉴定CpEfat/CpEfat样本中升高的肽离子。从这些离子中,鉴定出了27种源自已知神经肽(包括CpE底物)的肽段,以及另外25种来自未知是神经肽加工途径组成成分的蛋白质的肽段。鉴定出的已知CpE底物包括最近发现的proSAAS,一种抑制激素原加工的类颗粒神经内分泌肽前体。该方法证明了使用基于亲和的方法来鉴定正常小鼠和突变小鼠之间特定类别肽段差异的可行性。