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首页> 外文期刊>Neurospine. >Proteomic Signatures of Healthy Intervertebral Discs From Organ Donors: A Comparison With Previous Studies on Discs From Scoliosis, Animals, and Trauma
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Proteomic Signatures of Healthy Intervertebral Discs From Organ Donors: A Comparison With Previous Studies on Discs From Scoliosis, Animals, and Trauma

机译:器官供体的健康椎间盘蛋白质组学特征:与脊柱侧凸,动物和创伤椎间盘的研究比较

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OBJECTIVE:To catalog and characterize the proteome of normal human intervertebral disc (IVD).METHODS:Nine magnetic resonance imaging (MRI) normal IVDs were harvested from 9 different brain dead yet alive voluntary organ donors and were subjected to electrospray ionization-liquid chromatography tandem mass spectrometry (ESI-LC-MS/MS) acquisition.RESULTS:A total of 1,116 proteins were identified. Functional enrichment analysis tool DAVID ver. 6.8 categorized: extracellular proteins (38%), intracellular (31%), protein-containing complex (13%), organelle (9%), membrane proteins (6%), supramolecular complex (2%), and 1% in the cell junction. Molecular function revealed: binding activity (42%), catalytic activity (31%), regulatory activity (14%), and structural activity (7%). Molecular transducer, transporter, and transcription regulator activity together contributed to 6%. A comparison of the proteins obtained from this study to others in the literature showed a wide variation in content with only 3% of bovine, 5% of murine, 54% of human scoliotic discs, and 10.2% of discs adjacent to lumbar burst fractures common to our study of organ donors. Between proteins reported in scoliosis and lumbar fracture patients, only 13.51% were common, further signifying the contrast amongst the various MRI normal IVD samples.CONCLUSION:The proteome of "healthy" human IVDs has been defined, and our results show that proteomic data on IVDs obtained from scoliosis, fracture patients, and cadavers lack normal physiological conditions and should not be used as biological controls despite normal MRI findings. This questions the validity of previous studies that have used such discs as controls for analyzing the pathomechanisms of disc degeneration.
机译:目的:目录并表征正常人体椎间盘(IVD)的蛋白质组。方法:九个磁共振成像(MRI)正常IVDS从9种不同的脑死但活着的自愿器官供体收获,并进行电喷雾电离 - 液相色谱串联质谱法(ESI-LC-MS / MS)采集。结果:鉴定了总共1,116个蛋白质。功能丰富分析工具David Ver。 6.8分类:细胞外蛋白(38%),细胞内(31%),含蛋白质复合物(13%),细胞器(9%),膜蛋白(6%),超分子复合物(2%),1%细胞交界处。分子功能显示:结合活性(42%),催化活性(31%),调节活性(14%)和结构活性(7%)。分子传感器,转运蛋白和转录调节剂一起导致6%。从本研究中获得的蛋白质与文献中的其他研究表明,只有3%的牛,5%的鼠,54%的人丘疹盘的含量和10.2%含有腰部爆裂裂缝常见的含量我们对器官捐赠者的研究。在脊柱侧凸和腰椎骨折患者中报告的蛋白质之间,只有13.51%常见,进一步在各种MRI正常IVD样品中引起对比。结论:已定义“健康”人体IVDS的蛋白质组,我们的结果显示了蛋白质组学数据尽管正常的MRI调查结果,但抗脊柱侧凸,骨折患者和尸体缺乏正常的生理条件,并且不应用作生物控制。这提出了先前研究的有效性,这些研究已经使用此类光盘作为分析盘变性的土程机制的控制。

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