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In-depth proteomic profiling of the normal human kidney glomerulus using two-dimensional protein prefractionation in combination with liquid chromatography-tandem mass soectrometry

机译:二维蛋白质预分级结合液相色谱-串联质谱法对正常人肾小球进行深入的蛋白质组学分析

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The kidney glomerulus plays a pivotal role in ultrafiltration of plasma into urine and also is the locus of kidney disease progressing to chronic renal failure. We have focused proteomic analysis on the glomerulus that is most proximal to the disease locus. In the present study, we aimed to provide a confident, in-depth profiling of the glomerulus proteome. The glomeruli were highly purified from the kidney cortex from a male, 68-year-old patient who underwent nephroureterectomy due to ureter carcinoma. The patient was normal in clinical examinations including serum creatinine and urea levels and liver function, and did not receive any chemotherapy and radiotherapy. The cortical tissue was histologically normal, and no significant deposition of immunoglobulins and complement C3 was observed. We employed a novel strategy of protein separation using 1D (SDS-PAGE) and 2D (solution-phase IEF in combination with SDS-PAGE) prefractionation prior to the shotgun analysis with LC-MS/MS. The protein prefractionation produced 90 fractions, and eventually provided a confident set of identified proteins consisting of 6686 unique proteins (3679 proteins with two or more peptide matches and 3007 proteins with one peptide match), representing 2966 distinct genes. All the identified proteins were annotated and classified in-terms of molecular function and biological process, compiled into 1 D and 2D protein arrays, consisting of 15 and 75 sections, corresponding to the protein fractions which were defined by MW and p/range, and deposited on a Web-based database (http://www.hkupp.org). The most remarkable feature of the glomerulus proteome was a high incidence of identification of cytoskeleton-related proteins, presumably reflecting the well-developed, cytoskeletal organization of glomerular cells related to their physiological functions.
机译:肾小球在血浆向尿液的超滤中起关键作用,也是肾病进展为慢性肾衰竭的场所。我们将蛋白质组学分析的重点放在最靠近疾病所在地的肾小球上。在本研究中,我们旨在为肾小球蛋白质组提供一个自信,深入的分析。肾小球高度纯化自一名68岁男性患者的肾皮质,该患者由于输尿管癌而接受了肾切除术。该患者的临床检查正常,包括血清肌酐,尿素水平和肝功能,未接受任何化学疗法和放射疗法。皮质组织在组织学上是正常的,并且没有观察到免疫球蛋白和补体C3的显着沉积。在采用LC-MS / MS进行gun弹枪分析之前,我们采用了一种使用1D(SDS-PAGE)和2D(溶液相IEF与SDS-PAGE组合)进行蛋白质分离的新策略。蛋白质预分离产生90个馏分,并最终提供了一组可靠的已鉴定蛋白质,这些蛋白质由6686个独特蛋白质组成(3679个具有两个或多个肽段匹配的蛋白质和3007个具有一个肽段匹配的蛋白质),代表2966个不同的基因。所有鉴定出的蛋白质均按分子功能和生物学过程进行注释和分类,分为1D和2D蛋白质阵列,由15和75个部分组成,分别对应于由MW和p / range定义的蛋白质部分,以及存放在基于Web的数据库(http://www.hkupp.org)中。肾小球蛋白质组的最显着特征是细胞骨架相关蛋白鉴定的高发生率,大概反映了肾小球细胞的发达,细胞骨架组织与其生理功能有关。

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