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Toxicity and membrane perturbation properties of the ribotoxin-like protein Ageritin
The Journal of Biochemistry ( IF 2.7 ) Pub Date : 2021-05-16 , DOI: 10.1093/jb/mvab062
Erosantonio Lampitella 1 , Nicola Landi 2 , Rosario Oliva 1 , Rosa Gaglione 1, 3 , Andrea Bosso 4 , Federica De Lise 4 , Sara Ragucci 2 , Angela Arciello 1, 3 , Luigi Petraccone 1 , Elio Pizzo 4 , Pompea Del Vecchio 1 , Antimo Di Maro 2
Affiliation  

Ageritin is the prototype of a new ribotoxin-like protein family, which has been recently identified also in basidiomycetes. The protein exhibits specific RNase activity through the cleavage of a single phosphodiester bond located at sarcin/ricin loop of the large rRNA, thus inhibiting protein biosynthesis at early stages. Conversely to other ribotoxins, its activity requires the presence of divalent cations. In the present study, we report the activity of Ageritin on both prokaryotic and eukaryotic cells showing that the protein has a prominent effect on cancer cells viability and no effects on eukaryotic and bacterial cells. In order to rationalize these findings, the ability of the protein to interact with various liposomes mimicking normal, cancer and bacterial cell membranes was explored. The collected results indicate that Ageritin can interact with DPPC/DPPS/Chol vesicles, used as a model of cancer cell membranes, and with DPPC/DPPG vesicles, used as a model of bacterial cell membranes, suggesting a selective interaction with anionic lipids. However, a different perturbation of the two model membranes, mediated by cholesterol redistribution, was observed and this might be at the basis of Ageritin selective toxicity towards cancer cells.

中文翻译:

核糖毒素样蛋白 Ageritin 的毒性和膜扰动特性

Ageritin 是一种新的核糖毒素样蛋白家族的原型,最近在担子菌中也发现了这种蛋白家族。该蛋白质通过裂解位于大 rRNA 的肌氨酸/蓖麻毒素环上的单个磷酸二酯键表现出特定的 RNase 活性,从而在早期抑制蛋白质生物合成。与其他核糖毒素相反,其活性需要二价阳离子的存在。在本研究中,我们报告了 Ageritin 对原核细胞和真核细胞的活性,表明该蛋白质对癌细胞的活力有显着影响,而对真核细胞和细菌细胞没有影响。为了使这些发现合理化,研究了蛋白质与各种模仿正常、癌症和细菌细胞膜的脂质体相互作用的能力。收集到的结果表明,Ageritin 可以与用作癌细胞膜模型的 DPPC/DPPS/Chol 囊泡和用作细菌细胞膜模型的 DPPC/DPPG 囊泡相互作用,表明与阴离子脂质的选择性相互作用。然而,观察到由胆固醇再分布介导的两种模型膜的不同扰动,这可能是阿格瑞汀对癌细胞的选择性毒性的基础。
更新日期:2021-05-17
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