首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Ochratoxin A-binding proteins in rat organs and plasma and in different cell lines of the kidney.
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Ochratoxin A-binding proteins in rat organs and plasma and in different cell lines of the kidney.

机译:大鼠器官和血浆以及肾脏不同细胞系中的ch曲霉毒素A结合蛋白。

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In order to detect cellular proteins which bind the mycotoxin ochratoxin A (OTA) we coupled OTA covalently to horseradish peroxidase (HRP). The peroxidase activity of the conjugate was used to detect these proteins in Western (ligand) blot analysis. Only signals caused by OTA binding to proteins were viewable. HRP alone detected no proteins and OTA-HRP binding could be inhibited by free OTA. Several proteins from the rat intestine, liver, spleen, and kidney were detected by OTA. Also rat plasma proteins bind OTA which confirms previous findings. In all renal cell lines investigated (MDCK-C11, OK, LLC-PK1, IHKE, and SKPT) there are several proteins which bind OTA. Comparison of the PonceauS stain on the nitrocellulose sheet with the signal obtained from OTA-HRP unveiled proteins with high specific OTA binding. Especially, proteins with molecular masses between 55 and 60 kDa, 40 and 45 kDa and 25 and 30 kDa showed OTA binding in all samples. OTA was partially displaced by aspartame and phenylalanine from some but not all proteins. Binding to cytosolic and organellar proteins was comparable in all investigated cell lines. In the OK cell organellar compartment a 62 kDa protein is preferentially detected by OTA-HRP although virtually no protein band is detectable. In conclusion we have found a method to clearly detect proteins which bind OTA. With this new method we proved that OTA has the potential to bind to several proteins yet specific binding differs dramatically. Thus, highly specific binding of OTA possibly makes certain proteins a preferential target of OTA toxicity. Furthermore, binding contributes to intracellular accumulation of OTA, thus leading to a prolonged half life in the mammalian body and emphasises the toxic potential of this fungal metabolite.
机译:为了检测结合霉菌毒素曲霉毒素A(OTA)的细胞蛋白,我们将OTA与辣根过氧化物酶(HRP)共价偶联。结合物的过氧化物酶活性用于蛋白质印迹分析中检测这些蛋白质。仅可以看到由OTA与蛋白质结合引起的信号。单独的HRP不能检测到任何蛋白质,游离OTA可以抑制OTA-HRP结合。通过OTA检测到来自大鼠肠,肝,脾和肾的几种蛋白质。大鼠血浆蛋白也结合OTA,这证实了先前的发现。在所有研究的肾细胞系中(MDCK-C11,OK,LLC-PK1,IHKE和SKPT),有几种结合OTA的蛋白质。硝酸纤维素纸上PonceauS染色与从OTA-HRP获得的信号的比较揭示了具有高特异性OTA结合的蛋白质。尤其是,分子量在55至60 kDa,40至45 kDa和25至30 kDa之间的蛋白质在所有样品中均显示OTA结合。 OTA被部分而非全部蛋白质中的阿斯巴甜和苯丙氨酸部分取代。在所有研究的细胞系中,与胞质蛋白和细胞器蛋白的结合具有可比性。在OK细胞的细胞器室中,虽然实际上没有蛋白带被检测到,但优先通过OTA-HRP检测到62 kDa的蛋白。总之,我们已经找到了一种方法来清楚地检测结合OTA的蛋白质。通过这种新方法,我们证明了OTA具有与多种蛋白质结合的潜力,但特异性结合却大不相同。因此,OTA的高度特异性结合可能会使某些蛋白质成为OTA毒性的优先靶标。此外,结合有助于OTA的细胞内积累,从而导致哺乳动物体内半衰期延长,并强调了这种真菌代谢产物的潜在毒性。

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