Sleat David E, Wang Yanhong, Sohar Istvan, Lackland Henry, Li Yan, Li Hong, Zheng Haiyan, Lobel Peter
Center for Advanced Biotechnology and Medicine, University of Medicine and Dentistry of New Jersey, Piscataway, 08854, USA.
Mol Cell Proteomics. 2006 Oct;5(10):1942-56. doi: 10.1074/mcp.M600030-MCP200. Epub 2006 May 17.
Acid hydrolase activities are normally confined within the cell to the lysosome, a membrane-delimited cytoplasmic organelle primarily responsible for the degradation of macromolecules. However, lysosomal proteins are also present in human plasma, and a proportion of these retain mannose 6-phosphate (Man-6-P), a modification on N-linked glycans that is recognized by Man-6-P receptors (MPRs) that normally direct the targeting of these proteins to the lysosome. In this study, we purified the Man-6-P glycoforms of proteins from human plasma by affinity chromatography on immobilized MPRs and characterized this subproteome by two-dimensional gel electrophoresis and by tandem mass spectrometry. As expected, we identified many known and potential candidate lysosomal proteins. In addition, we also identified a number of abundant classical plasma proteins that were retained even after two consecutive rounds of affinity purification. Given their abundance in plasma, we initially considered these proteins to be likely contaminants, but a mass spectrometric study of Man-6-phosphorylation sites using MPR-purified glycopeptides revealed that some proportion of these classical plasma proteins contained the Man-6-P modification. We propose that these glycoproteins are phosphorylated at low levels by the lysosomal enzyme phosphotransferase, but their high abundance results in detection of Man-6-P glycoforms in plasma. These results may provide useful insights into the molecular processes underlying Man-6-phosphorylation and highlight circumstances under which the presence of Man-6-P may not be indicative of lysosomal function. In addition, characterization of the plasma Man-6-P glycoproteome should facilitate development of mass spectrometry-based tools for the diagnosis of lysosomal storage diseases and for investigating the involvement of Man-6-P-containing glycoproteins in more widespread human diseases and their potential utility as biomarkers.
酸性水解酶的活性通常在细胞内局限于溶酶体,溶酶体是一种由膜界定的细胞质细胞器,主要负责大分子的降解。然而,溶酶体蛋白也存在于人体血浆中,其中一部分保留了甘露糖6 - 磷酸(Man-6-P),这是N - 连接聚糖上的一种修饰,可被甘露糖6 - 磷酸受体(MPRs)识别,而MPRs通常将这些蛋白靶向运输到溶酶体。在本研究中,我们通过固定化MPRs的亲和色谱法从人血浆中纯化了蛋白的Man-6-P糖型,并通过二维凝胶电泳和串联质谱对该亚蛋白质组进行了表征。正如预期的那样,我们鉴定出了许多已知的和潜在的候选溶酶体蛋白。此外,我们还鉴定出了一些丰富的经典血浆蛋白,即使经过两轮连续的亲和纯化后它们仍被保留。鉴于它们在血浆中的丰度,我们最初认为这些蛋白可能是污染物,但使用MPR纯化的糖肽对Man-6-磷酸化位点进行的质谱研究表明,这些经典血浆蛋白中有一部分含有Man-6-P修饰。我们提出,这些糖蛋白被溶酶体酶磷酸转移酶低水平磷酸化,但其高丰度导致在血浆中检测到Man-6-P糖型。这些结果可能为Man-6-磷酸化的分子过程提供有用的见解,并突出了Man-6-P的存在可能不指示溶酶体功能的情况。此外,血浆Man-6-P糖蛋白质组的表征应有助于开发基于质谱的工具,用于诊断溶酶体贮积病以及研究含Man-6-P的糖蛋白在更广泛的人类疾病中的作用及其作为生物标志物的潜在用途。