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Morphine biosynthesis in opium poppy involves two cell types: sieve elements and laticifers.

机译:罂粟中吗啡的生物合成涉及两种细胞类型:筛分元素和乳化剂。

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Immunofluorescence labeling and shotgun proteomics were used to establish the cell type-specific localization of morphine biosynthesis in opium poppy (Papaver somniferum). Polyclonal antibodies for each of six enzymes involved in converting (R)-reticuline to morphine detected corresponding antigens in sieve elements of the phloem, as described previously for all upstream enzymes transforming (S)-norcoclaurine to (S)-reticuline. Validated shotgun proteomics performed on whole-stem and latex total protein extracts generated 2031 and 830 distinct protein families, respectively. Proteins corresponding to nine morphine biosynthetic enzymes were represented in the whole stem, whereas only four of the final five pathway enzymes were detected in the latex. Salutaridine synthase was detected in the whole stem, but not in the latex subproteome. The final three enzymes converting thebaine to morphine were among the most abundant active latex proteins despite a limited occurrence in laticifers suggested by immunofluorescence labeling. Multiple charge isoforms of two key O-demethylases in the latex were revealed by two-dimensional immunoblot analysis. Salutaridine biosynthesis appears to occur only in sieve elements, whereas conversion of thebaine to morphine is predominant in adjacent laticifers, which contain morphine-rich latex. Complementary use of immunofluorescence labeling and shotgun proteomics has substantially resolved the cellular localization of morphine biosynthesis in opium poppy.
机译:免疫荧光标记和shot弹枪蛋白质组学用于建立罂粟(罂粟)中吗啡生物合成的细胞类型特异性定位。参与将(R)-网状茶碱转化为吗啡的六种酶中的每一种的多克隆抗体,都在韧皮部的筛分元件中检测到了相应的抗原,如先前针对将(S)-降尿酸嘌呤转化为(S)-网状茶碱的所有上游酶所述。对全茎和乳胶总蛋白提取物进行的经过验证的shot弹枪蛋白质组学分别产生了2031和830个不同的蛋白家族。整个茎中代表了与9种吗啡生物合成酶相对应的蛋白质,而在乳胶中仅检测到了最后5种途径酶中的4种。在整个茎中检测到Salutaridine合酶,但在乳胶亚蛋白质组中未检测到。尽管通过免疫荧光标记表明在胶乳中出现的情况有限,但最后三种将蒂巴因转化为吗啡的酶是活性乳胶蛋白中含量最高的。通过二维免疫印迹分析揭示了胶乳中两个关键O-脱甲基酶的多个电荷同工型。 Salutaridine的生物合成似乎仅发生在筛分元素中,而蒂巴因向吗啡的转化主要发生在含有富含吗啡的胶乳的相邻胶乳中。互补使用免疫荧光标记和shot弹枪蛋白质组学已基本解决了罂粟中吗啡生物合成的细胞定位。

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