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Isolation and Characterization of a Novel Ribosome-Inactivating Protein from Root Cultures of Pokeweed and Its Mechanism of Secretion from Roots1

机译:商陆根培养物中新型核糖体失活蛋白的分离,鉴定及其从根中分泌的机制

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摘要

Ribosome-inactivating proteins are N-glycosidases that remove a specific adenine from the sarcin/ricin loop of the large rRNA, thus arresting protein synthesis at the translocation step. In the present study, a novel type I ribosome-inactivating protein, termed PAP-H, was purified from Agrobacterium rhizogenes-transformed hairy roots of pokeweed (Phytolacca americana). The protein was purified by anion- and cation-exchange chromatography. PAP-H has a molecular mass of 29.5 kD as detected by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and its isoelectric point was determined to be 7.8. Yeast (Saccharomyces cerevisiae) ribosomes incubated with PAP-H released the 360-nucleotide diagnostic fragment from the 26S rRNA upon aniline treatment, an indication of its ribosome-inactivating activity. Using immunofluorescence microscopy, PAP-H was found to be located in the cell walls of hairy roots and root border cells. PAP-H was determined to be constitutively secreted as part of the root exudates, with its secretion enhanced by a mechanism mediated by ethylene induction. Purified PAP-H did not show in vitro antifungal activity against soil-borne fungi. In contrast, root exudates containing PAP-H as well as additional chitinase, β-1,3-glucanase, and protease activities did inhibit the growth of soil-borne fungi. We found that PAP-H depurinates fungal ribosomes in vitro and in vivo, suggesting an additive mechanism that enables PAP-H to penetrate fungal cells.
机译:核糖体失活蛋白是N-糖苷酶,可从大型rRNA的sarcin / ricin环中去除特定的腺嘌呤,从而在转运步骤中阻止蛋白合成。在本研究中,一种新的I型核糖体失活蛋白,称为PAP-H,是从发根农杆菌转化的商陆(毛竹)毛状根中纯化得到的。通过阴离子交换和阳离子交换层析纯化蛋白质。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳检测到的PAP-H的分子量为29.5kD,确定其等电点为7.8。酵母(酿酒酵母)核糖体与PAP-H孵育后,在苯胺处理后从26S rRNA释放了360个核苷酸的诊断片段,表明其核糖体失活活性。使用免疫荧光显微镜检查,发现PAP-H位于毛状根和根边界细胞的细胞壁中。 PAP-H被确定为组成型分泌物,是根分泌物的一部分,其分泌通过乙烯诱导介导的机制增强。纯化的PAP-H没有显示出对土壤传播真菌的体外抗真菌活性。相反,含有PAP-H以及其他几丁质酶,β-1,3-葡聚糖酶和蛋白酶活性的根系分泌物确实抑制了土壤传播真菌的生长。我们发现,PAP-H在体外和体内都能使真菌核糖体脱嘌呤,这表明加成机制使PAP-H能够穿透真菌细胞。

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