Department of Vision Sciences, University of Alabama at Birmingham, 924 18th Street South, Birmingham, AL 35294-4390, USA.
Exp Eye Res. 2011 Apr;92(4):282-98. doi: 10.1016/j.exer.2011.01.008. Epub 2011 Jan 31.
The purpose of the study was to identify epithelial and stromal proteins that exhibit up- or down-regulation in keratoconus (KC) vs. normal human corneas. Because previous proteomic studies utilized whole human corneas or epithelium alone, thereby diluted the specificity of the proteome of each tissue, we selectively analyzed the epithelium and stromal proteins. Individual preparations of epithelial and stromal proteins from KC and age-matched normal corneas were analyzed by two independent methods, i.e., a shotgun proteomic using a Nano-Electrospray Ionization Liquid Chromatography Tandem Mass Spectrometry [Nano-ESI-LC-MS (MS)(2)] and two-dimensional-difference gel electrophoresis (2D-DIGE) coupled with mass spectrometric methods. The label-free Nano-ESI-LC-MS (MS)(2) method identified 104 epithelial and 44 stromal proteins from both normal and KC corneas, and also quantified relative changes in levels of selected proteins, in both the tissues using spectral counts in a proteomic dataset. Relative to normal corneal epithelial proteins, six KC epithelial proteins (lamin-A/C, keratin type I cytoskeletal 14, tubulin beta chain, heat shock cognate 71 kDa protein, keratin type I cytoskeletal 16 and protein S100-A4) exhibited up-regulation and five proteins (transketolase, pyruvate kinase, 14-3-3 sigma isoform, phosphoglycerate kinase 1, and NADPH dehydrogenase (quinone) 1) showed down-regulation. A similar relative analysis showed that three KC stromal proteins (decorin, vimentin and keratocan) were up-regulated and five stromal proteins (TGF-betaig h3 (Bigh3), serotransferrin, MAM domain-containing protein 2 and isoforms 2C2A of collagen alpha-2[VI] chain) were down-regulated. The 2D-DIGE-mass spectrometry followed by Decyder software analysis showed that relative to normal corneas, the KC corneal epithelium exhibited up-regulation of four proteins (serum albumin, keratin 5, L-lactate dehydrogenase and annexin A8) and down-regulation of four proteins (FTH1 [Ferritin heavy chain protein 1], calpain small subunit 1, heat shock protein beta 1 and annexin A2). A similar relative analysis of stroma by this method also showed up-regulation of aldehyde dehydrogenase 3A1 (ALDH3A1), keratin 12, apolipoprotein A-IV precursor, haptoglobin precursor, prolipoprotein and lipoprotein Gln in KC corneas. Together, the results suggested that the Nano-ESI-LC-MS(MS)(2) method was superior than the 2D-DIGE method as it identified a greater number of proteins with altered levels in KC corneas. Further, the epithelial and stromal structural proteins of KC corneas exhibited altered levels compared to normal corneas, suggesting that they are affected due to structural remodeling during KC development and progression. Additionally, because several epithelial and stromal enzymes exhibited up- or down-regulation in the KC corneas relative to normal corneas, the two layers of KC corneas were under metabolic stress to adjust their remodeling.
本研究的目的是鉴定在圆锥角膜(KC)与正常人类角膜中呈现上调或下调的上皮和基质蛋白。由于之前的蛋白质组学研究使用了整个人类角膜或仅上皮,从而稀释了每种组织的蛋白质组的特异性,因此我们选择性地分析了上皮和基质蛋白。从 KC 和年龄匹配的正常角膜中单独制备上皮和基质蛋白,并通过两种独立的方法进行分析,即使用纳升电喷雾电离液相色谱串联质谱法(Nano-ESI-LC-MS(MS)(2))的鸟枪法蛋白质组学和二维差异凝胶电泳(2D-DIGE)与质谱方法相结合。无标记的纳升电喷雾电离液相色谱串联质谱(MS)(2)方法从正常和 KC 角膜中鉴定了 104 种上皮和 44 种基质蛋白,并使用蛋白质组数据集的光谱计数定量了两种组织中选定蛋白质水平的相对变化。与正常角膜上皮蛋白相比,KC 上皮蛋白中的六种蛋白(核纤层蛋白 A/C、角蛋白 I 细胞骨架 14、微管蛋白β链、热休克同源 71kDa 蛋白、角蛋白 I 细胞骨架 16 和 S100-A4 蛋白)表现出上调,而五种蛋白(转酮醇酶、丙酮酸激酶、14-3-3 西格玛同工型、磷酸甘油酸激酶 1 和 NADPH 脱氢酶(醌)1)表现出下调。类似的相对分析表明,KC 基质中的三种蛋白(核心蛋白聚糖、波形蛋白和角膜蛋白聚糖)上调,而五种基质蛋白(转化生长因子-β诱导 h3(Bigh3)、转铁蛋白、MAM 结构域蛋白 2 和胶原α-2[VI]链的 2C2A 同工型)下调。2D-DIGE-质谱分析后,通过 Decyder 软件分析表明,与正常角膜相比,KC 角膜上皮中四种蛋白(血清白蛋白、角蛋白 5、L-乳酸脱氢酶和膜联蛋白 A8)上调,四种蛋白(铁蛋白重链蛋白 1、钙蛋白酶小亚基 1、热休克蛋白β 1 和膜联蛋白 A2)下调。通过该方法对基质进行类似的相对分析也表明,醛脱氢酶 3A1(ALDH3A1)、角蛋白 12、载脂蛋白 A-IV 前体、触珠蛋白前体、原脂蛋白和谷氨酰胺脂蛋白在 KC 角膜中上调。总之,结果表明,与 2D-DIGE 方法相比,Nano-ESI-LC-MS(MS)(2)方法更优越,因为它鉴定了 KC 角膜中具有改变水平的更多数量的蛋白。此外,与正常角膜相比,KC 角膜的上皮和基质结构蛋白的水平发生改变,表明它们在 KC 发展和进展过程中由于结构重塑而受到影响。此外,由于 KC 角膜中几种上皮和基质酶相对于正常角膜呈现上调或下调,因此 KC 角膜的两层都处于代谢应激状态以调整其重塑。