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细胞外基质蛋白质组:用于蛋白质组学研究的细胞外基质蛋白的分离

Extracellular Matrix Proteome: Isolation of ECM Proteins for Proteomics Studies.

作者信息

Elagamey Eman, Narula Kanika, Chakraborty Niranjan, Chakraborty Subhra

机构信息

National Institute of Plant Genome Research, New Delhi, India.

Plant Pathology Research Institute, Agricultural Research Center (ARC), Giza, Egypt.

出版信息

Methods Mol Biol. 2020;2057:155-172. doi: 10.1007/978-1-4939-9790-9_14.

Abstract

Understanding molecular mechanisms and cellular metabolism in varied plant processes necessitates knowledge of the expressed proteins and their subcellular distribution. Spatial partitioning of organelles generates an enclosed milieu for physiochemical reactions designed and tightly linked to a specific organelle function. Of which, extracellular matrix (ECM)/cell wall (CW) is a dynamic and chemically active compartment. The ECM proteins are organized into complex structural and functional networks involved in several metabolic processes, including carbon and nitrogen metabolism. Organellar proteomics aim for comprehensive identification of resident proteins that rely on the isolation of highly purified organelle free from contamination by other intracellular components. Extraction and isolation of plant ECM proteins features key caveats due to the lack of adjoining membrane, the presence of a polysaccharide-protein network that traps contaminants, and the existence of high phenolic content. Furthermore, due to diverse biochemical forces, including labile, weakly bound and strongly bound protein in the protein-polysaccharide matrix different elution procedures are required to enrich ECM proteins. Here, we describe a method that allows efficient fractionation of plant ECM, extraction of ECM proteins and protein profiling from variety of crop plants, including rice, chickpea and potato. This method can easily be adapted to other plant species for varied experimental conditions.

摘要

了解不同植物过程中的分子机制和细胞代谢需要了解表达的蛋白质及其亚细胞分布。细胞器的空间分隔为与特定细胞器功能设计并紧密相连的物理化学反应生成了一个封闭的环境。其中,细胞外基质(ECM)/细胞壁(CW)是一个动态且具有化学活性的区室。ECM蛋白被组织成参与多种代谢过程(包括碳和氮代谢)的复杂结构和功能网络。细胞器蛋白质组学旨在全面鉴定依赖于从其他细胞内成分污染中分离出的高度纯化细胞器的驻留蛋白。由于缺乏相邻膜、存在捕获污染物的多糖 - 蛋白质网络以及高酚含量的存在,植物ECM蛋白的提取和分离具有关键注意事项。此外,由于蛋白质 - 多糖基质中存在多种生化力,包括不稳定、弱结合和强结合的蛋白质,需要不同的洗脱程序来富集ECM蛋白。在这里,我们描述了一种方法,该方法允许对植物ECM进行有效分级分离、从包括水稻、鹰嘴豆和马铃薯在内的多种作物中提取ECM蛋白并进行蛋白质谱分析。该方法可以很容易地适应其他植物物种以用于各种实验条件。

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