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A Rapid and Reliable Method for Total Protein Extraction from Succulent Plants for Proteomic Analysis

机译:蛋白质组学分析中植物总蛋白质提取的快速可靠方法

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Crassulacean acid metabolism plants have some morphological features, such as succulent and reduced leaves, thick cuticles, and sunken stomata that help them prevent excessive water loss and irradiation. As molecular constituents of these morphological adaptations to xeric environments, succulent plants produce a set of specific compounds such as complex polysaccharides, pigments, waxes, and terpenoids, to name a few, in addition to uncharacterized proteases. Since all these compounds interfere with the analysis of proteins by electrophoretic techniques, preparation of high quality samples from these sources represents a real challenge. The absence of adequate protocols for protein extraction has restrained the study of this class of plants at the molecular level. Here, we present a rapid and reliable protocol that could be accomplished in 1 h and applied to a broad range of plants with reproducible results. We were able to obtain well-resolved SDS/PAGE protein patterns in extracts from different members of the subfamilies Agavoideae (Agave, Yucca, Manfreda, and Furcraea), Nolinoideae (Dasylirion and Beucarnea), and the Cactaceae family. This method is based on the differential solubility of contaminants and proteins in the presence of acetone and pH-altered solutions. We speculate about the role of saponins and high molecular weight carbohydrates to produce electrophoretic-compatible samples. A modification of the basic protocol allowed the analysis of samples by bidimensional electrophoresis (2DE) for proteomic analysis. Furostanol glycoside 26-O-beta-glucosidase (an enzyme involved in steroid saponin synthesis) was successfully identified by mass spectrometry analysis and de novo sequencing of a 2DE spot from an Agave attenuata sample.
机译:Crassulacean酸性代谢植物具有一些形态特征,如肉质和减少的叶子,厚切片和沉没的气孔,帮助它们防止过量的水损失和辐射。作为这些形态素的分子成分对Xeric环境,多汁植物产生一组特异性化合物,例如复杂多糖,颜料,蜡和萜类化合物,除了不表达蛋白酶之外还为几种。由于所有这些化合物通过电泳技术干扰了蛋白质的分析,因此来自这些来源的高质量样本的制备代表了真正的挑战。没有足够的蛋白质提取方案的方案限制了在分子水平下对这类植物的研究。在这里,我们提出了一种快速可靠的方案,可以在1小时内完成,并应用于具有可重复结果的广泛植物。我们能够获得来自亚属Agavoideae(龙舌兰,Yucca,Manfreda和Furcraea),Nolinoideae(大约河河河群)和仙人掌家族的不同成员的提取物中解析的SDS / PACE蛋白模式。该方法基于污染物和蛋白质在丙酮和pH改变的溶液存在下的差异溶解度。我们推测皂苷和高分子量碳水化合物产生电泳相容样品的作用。基本协议的修饰允许通过对蛋白质组学分析的氮倍体电泳(2DE)进行样品分析。通过质谱分析和来自龙舌兰睾丸样品的2DE点的DE Novo测序成功地鉴定了Futostanol糖苷26-O-β-葡糖苷酶(涉及类固醇皂苷合成的酶)。

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