Centre for BioAnalytical Sciences, Dublin City University, Dublin, Ireland.
National Institute for Cellular Biotechnology, Dublin City University, Dublin, Ireland.
Kidney Int. 2015 May;87(5):963-74. doi: 10.1038/ki.2014.387. Epub 2015 Jan 14.
Diabetic nephropathy often progresses to end-stage kidney disease and, ultimately, to renal replacement therapy. Hyperglycemia per se is expected to have a direct impact on the biosynthesis of N- and O-linked glycoproteins. This study aims to establish the link between protein glycosylation and progression of experimental diabetic kidney disease using orthogonal methods. Kidneys of streptozotocin-diabetic and control rats were harvested at three different time points post streptozotocin injection. A panel of 12 plant lectins was used in the screening of lectin blots. The lectins UEAI, PHA-E, GSI, PNA, and RCA identified remarkable disease-associated differences in glycoprotein expression. Lectin affinity chromatography followed by mass spectrometric analyses led to the identification of several glycoproteins involved in salt-handling, angiogenesis, and extracellular matrix degradation. Our data confirm a substantial link between glycosylation signature and diabetes progression. Furthermore, as suggested by our findings on dipeptidyl peptidase-IV, altered protein glycosylation may reflect changes in biochemical properties such as enzymatic activity. Thus, our study demonstrates the unexplored potential of protein glycosylation analysis in the discovery of molecules linked to diabetic kidney disease.
糖尿病肾病常进展为终末期肾病,最终需要肾脏替代治疗。高血糖本身预计会对 N-和 O-连接糖蛋白的生物合成产生直接影响。本研究旨在使用正交方法建立蛋白质糖基化与实验性糖尿病肾病进展之间的联系。链脲佐菌素糖尿病大鼠和对照组大鼠的肾脏在链脲佐菌素注射后三个不同时间点被收获。使用一组 12 种植物凝集素来筛选凝集素印迹。凝集素 UEAI、PHA-E、GSI、PNA 和 RCA 鉴定出糖蛋白表达与疾病相关的显著差异。凝集素亲和层析后进行质谱分析,鉴定出几种涉及盐处理、血管生成和细胞外基质降解的糖蛋白。我们的数据证实了糖基化特征与糖尿病进展之间的实质性联系。此外,正如我们在二肽基肽酶-IV 上的发现所表明的那样,蛋白质糖基化的改变可能反映了生化性质的变化,如酶活性。因此,我们的研究表明,蛋白质糖基化分析在发现与糖尿病肾病相关的分子方面具有尚未开发的潜力。