Department of Biophysics, Universidade Federal do Rio Grande do Sul, Porto Alegre CEP 91501-970, RS, Brazil.
Toxicon. 2013 Sep;71:76-83. doi: 10.1016/j.toxicon.2013.05.008. Epub 2013 May 30.
Canavalia ensiformis has three isoforms of urease: Jackbean urease (JBU), Jackbean urease II and canatoxin. These isoforms present several biological activities, independent from the enzymatic property, such as entomotoxicity and antifungal properties. The entomotoxic activity is a property of the whole protein, as well as of a 10 kDa peptide released by insect digestive enzymes. Here we have used chemical modification to observe the influence of lysines and acidic residues on JBU enzymatic and insecticidal activities. Chemical modification of lysine residues was performed with dimethylamine-borane complex and formaldehyde, and acidic residues were modified by 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide and ethylenediamine. Derivatized ureases, called JBU-Lys (lysine-modified) and JBU-Ac (acidic residues-modified), were assayed for their biochemical and insecticidal properties. Neither modification altered significantly the kinetic parameters analyzed, indicating that no residue critical for the enzyme activity was affected and that the modifications did not incur in any significant structural alteration. On the other hand, both modifications reduced the toxic activity of the native protein fed to Dysdercus peruvianus. The changes observed in the entomotoxic property of the derivatized proteins reflect alterations in different steps of JBU's toxicity towards insects. JBU-Ac is not susceptible to hydrolysis by insect digestive enzymes, hence impairing the release of toxic peptide(s), while JBU-Lys is processed as the native protein. On the other hand, the antidiuretic effect of JBU on Rhodnius prolixus is altered in JBU-Lys, but not in JBU-Ac. Altogether, these data emphasize the role of lysine and acidic residues on the insecticidal properties of ureases.
豇豆脲酶(JBU)、豇豆脲酶 II 和刀豆毒素。这些同工酶具有多种生物学活性,与酶的特性无关,例如杀虫毒性和抗真菌特性。杀虫毒性是整个蛋白质的特性,也是昆虫消化酶释放的 10 kDa 肽的特性。在这里,我们使用化学修饰来观察赖氨酸和酸性残基对 JBU 酶活性和杀虫活性的影响。赖氨酸残基的化学修饰使用二甲胺-硼烷复合物和甲醛进行,酸性残基用 1-乙基-3-(3-二甲基氨基丙基)碳二亚胺和乙二胺进行修饰。衍生的脲酶称为 JBU-Lys(赖氨酸修饰)和 JBU-Ac(酸性残基修饰),用于测定其生化和杀虫特性。两种修饰都没有显著改变分析的动力学参数,表明没有关键的酶活性残基受到影响,并且修饰没有导致任何明显的结构改变。另一方面,两种修饰都降低了喂食给秘鲁地蜥的天然蛋白的毒性活性。衍生蛋白杀虫毒性的变化反映了 JBU 对昆虫毒性的不同步骤的改变。JBU-Ac 不易被昆虫消化酶水解,从而阻止了有毒肽的释放,而 JBU-Lys 则像天然蛋白一样被加工。另一方面,JBU 对 Rhodnius prolixus 的利尿作用在 JBU-Lys 中发生改变,但在 JBU-Ac 中没有改变。总的来说,这些数据强调了赖氨酸和酸性残基在脲酶杀虫特性中的作用。