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Physiochemical and protein datasets related to citrus juice sac cells-derived nanovesicles and microvesicles

机译:与柑橘汁囊细胞衍生的纳米囊泡和微囊泡相关的理化和蛋白质数据集

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Qualitative and quantitative data obtained on micro and nanovesicle enriched fractions isolated from four citrus species,C. sinensis,C. limon,C. paradisiandC. aurantiumare presented. It includes physiochemical characterization by transmission electron microscopy (TEM) and dynamic laser scattering (DLS); and molecular characterization of the biocargo of citrus vesicles by quantitative label-free proteomics. Vesicular transport related proteins ofC. sinensiswere predicted by (i) finding orthologues based on previously described vesicular transport proteins and (ii) GO term enrichment analysis. Based on the protein content different types of intra and intercellular vesicles were dissected and the distribution of different Enzyme classes (ECs) were determined. This data article is related to “Protein biocargo of citrus fruit-derived vesicles reveals heterogeneous transport and extracellular vesicle populations” (Pocsfalvi et al., 2018).
机译:从四个柑橘类物种中分离出的富含微囊泡和纳米囊泡的馏分的定性和定量数据中华利蒙角天堂C.提出了金。它包括通过透射电子显微镜(TEM)和动态激光散射(DLS)进行的物理化学表征;定量无标签蛋白质组学对柑桔小囊的生物货物进行分子表征。 C的囊泡运输相关蛋白。通过(i)基于先前描述的囊泡转运蛋白发现直向同源物和(ii)GO术语富集分析来预测中华绒螯蟹。基于蛋白质含量,解剖不同类型的细胞内和细胞间囊泡,并确定不同酶类别(EC)的分布。该数据文章与“柑橘类水果来源的囊泡的蛋白质生物货物揭示了异质运输和细胞外囊泡种群”(Pocsfalvi等人,2018)有关。

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