Langer M, Rothe M, Eck J, Möckel B, Zinke H
Biotechnology Research and Information Network (BRAIN) GmbH, Zwingenberg, Germany.
Anal Biochem. 1996 Dec 1;243(1):150-3. doi: 10.1006/abio.1996.0493.
A sensitive nonradioactive method to determine the activity of ribosome-inactivating proteins (RIPs) based on a combined transcription/translation in vitro assay was established. Using this assay we investigated the RIP activities of the heterodimeric toxic plant lectins ricin and mistletoe lectin I (ML-I). The enzymatic activities of the holoproteins were compared to that of the RIP-active chain of ML-I (ML-I A-chain) and recombinant ML-I A-chain expressed in Escherichia coli. The IC50 values determined for the plant toxins showed that the translation-inactivating activity of ML-I (39.8 pM) is about four times higher than that of ricin (176.0 pM). The plant-derived ML-I A-chain is more toxic (3.4 pM) in the cell-free translation system than the respective holoprotein. The recombinant ML-I A-chain was found to be about three times less active (IC50 10.6 pM) than the A-chain from plant. The in vitro assay described here is a convenient method for the fast determination of RIP activity with a 1000-fold lower detection limit than that of commonly used RIP assays.
建立了一种基于体外转录/翻译联合检测法的灵敏非放射性方法来测定核糖体失活蛋白(RIPs)的活性。利用该检测法,我们研究了异二聚体毒性植物凝集素蓖麻毒素和槲寄生凝集素I(ML-I)的RIP活性。将全蛋白的酶活性与ML-I的RIP活性链(ML-I A链)以及在大肠杆菌中表达的重组ML-I A链的活性进行了比较。对植物毒素测定的IC50值表明,ML-I的翻译失活活性(39.8 pM)约为蓖麻毒素(176.0 pM)的四倍。在无细胞翻译系统中,植物来源的ML-I A链比相应的全蛋白毒性更大(3.4 pM)。发现重组ML-I A链的活性比植物来源的A链低约三倍(IC50为10.6 pM)。本文所述的体外检测法是一种快速测定RIP活性的便捷方法,其检测限比常用的RIP检测法低1000倍。