首页> 美国卫生研究院文献>Journal of Biomolecular Techniques : JBT >Comparison of Golgi Apparatus and Endoplasmic Reticulum Proteins from Livers of Juvenile and Aged Rats Using a Novel Technique for Separation and Enrichment of Organelles
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Comparison of Golgi Apparatus and Endoplasmic Reticulum Proteins from Livers of Juvenile and Aged Rats Using a Novel Technique for Separation and Enrichment of Organelles

机译:利用分离和富集细胞器的新技术比较幼年和成年大鼠肝脏中的高尔基体和内质网蛋白

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摘要

The broad dynamic range of protein abundances, which can vary from about 106 for cells to 1010 for tissues in complex proteomes, continues to challenge proteomics research. Proteome analysis, in particular organelle proteomics, using current approaches, requires extensive fractionation, separation, and enrichment. Over the years, organelle separation was achieved through the use of differential and density-gradient ultracentrifugation. However, the traditional fixed-volume process is a time-consuming and labor-intensive method, especially with large quantities of sample. Here, we present a novel tool for subcellular fractionation of biologically complex mixtures: continuous-flow ultracentrifugation of tissue homogenates to obtain both organelle separation and extensive organelle enrichment at the same time. In this study, rat liver tissues from two different age groups (3–8 wk and greater than 1 y old) were homogenized by blending. After removing nuclei, the resulting homogenates were further fractionated at the subcellular level by the use of sucrose gradient continuous-flow ultracentrifugation. Each organelle’s enriched fractions were identified by Western blot analysis. To study the possible effects of aging on the endoplasmic reticulum and Golgi apparatus, we compared the organelle protein profiles of the two groups of rat liver tissues using two-dimensional gel electrophoresis, digitized imaging of two-dimensional gel electrophoresis, and mass spectrometry. Significant differences in the protein profiles of both organelles were observed between the two groups of rat tissues. The technique described here for fractionation and enrichment of organelles demonstrated a useful tool for proteomics research, including identification of low-abundance proteins and post-translational modifications.
机译:蛋白质丰度的动态范围很宽,从复杂的蛋白质组学中的细胞到大约10 6 到组织的10 10 不等,继续挑战蛋白质组学的研究。使用当前的方法进行蛋白质组分析,特别是细胞器蛋白质组学,需要广泛的分离,分离和富集。多年来,通过使用差分和密度梯度超速离心技术实现了细胞器分离。但是,传统的定量处理是一种费时且费力的方法,尤其是处理大量样品时。在这里,我们提出了一种用于生物复杂混合物的亚细胞分级分离的新工具:组织匀浆的连续流超速离心,以同时获得细胞器分离和广泛的细胞器富集。在这项研究中,通过混合将来自两个不同年龄组(3-8周和大于1岁)的大鼠肝脏组织均质化。除去细胞核后,通过使用蔗糖梯度连续流超速离心进一步在亚细胞水平上分离所得匀浆。通过蛋白质印迹分析鉴定每个细胞器的富集级分。为了研究衰老对内质网和高尔基体的可能影响,我们使用二维凝胶电泳,二维凝胶电泳数字化成像和质谱比较了两组大鼠肝脏组织的细胞器蛋白质谱。在两组大鼠组织之间观察到两种细胞器蛋白质谱的显着差异。这里描述的用于细胞器的分离和富集的技术证明了蛋白质组学研究的有用工具,包括鉴定低丰度蛋白质和翻译后修饰。

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