Institute of Biotechnology, Federal University of Uberlândia, Campus Umuarama, Uberlândia, MG, Brazil.
Department of Genetics, Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto, SP, Brazil.
Int J Biol Macromol. 2021 Jul 1;182:1602-1610. doi: 10.1016/j.ijbiomac.2021.05.114. Epub 2021 May 24.
Phospholipase A Bothropstoxin-I (PLA BthTX-I) is a myotoxic Lys49-PLA from Bothrops jararacussu snake venom. In order to evaluate the DNA damage caused by BthTX-I, we used the Somatic Mutation and Recombination Test (SMART) in Drosophila melanogaster and Comet assay in HUVEC and DU-145 cells. For SMART, different concentrations of BthTX-I (6.72 to 430 μg/mL) were used and no significant changes in the survival rate were observed. Significant frequency of mutant spots was observed for the ST cross at the highest concentration of BthTX-I due to recombinogenic activity. In the HB cross, BthTX-I increased the number of mutant spots at intermediate concentrations, being 53.75 μg/mL highly mutagenic and 107.5 μg/mL predominantly recombinogenic. The highest concentrations were neither mutagenic nor recombinogenic, which could indicate cytotoxicity in the wing cells of D. melanogaster. In vitro, all BthTX-I concentrations (1 to 50 μg/mL) induced decrease in HUVEC cell viability, as well as in DU-145 cells at concentrations of 10, 25, and 50 μg/mL. The comet assay showed that in HUVEC and DU-145 cells, all BthTX-I concentrations promoted increase of DNA damage. Further studies should be performed to elucidate the mechanism of action of PLA BthTX-I and its possible use in therapeutic strategies against cancer.
磷脂酶 A 类 Bothropstoxin-I(PLA BthTX-I)是一种来自响尾蛇属(Bothrops)蛇毒的肌毒性 Lys49-PLA。为了评估 BthTX-I 引起的 DNA 损伤,我们在黑腹果蝇中使用体细胞突变和重组测试(SMART)和人脐静脉内皮细胞(HUVEC)和 DU-145 细胞的彗星试验。对于 SMART,使用了不同浓度的 BthTX-I(6.72 至 430μg/mL),但未观察到存活率有明显变化。由于具有重组活性,在最高浓度的 BthTX-I 下,ST 交叉的突变斑点频率显著增加。在 HB 交叉中,BthTX-I 在中间浓度下增加了突变斑点的数量,53.75μg/mL 时具有高诱变活性,107.5μg/mL 时主要是重组活性。最高浓度既没有诱变活性也没有重组活性,这可能表明 BthTX-I 在黑腹果蝇的翅膀细胞中具有细胞毒性。在体外,所有 BthTX-I 浓度(1 至 50μg/mL)均降低了 HUVEC 细胞活力,在浓度为 10、25 和 50μg/mL 时也降低了 DU-145 细胞活力。彗星试验表明,在 HUVEC 和 DU-145 细胞中,所有 BthTX-I 浓度均促进了 DNA 损伤的增加。应进一步开展研究以阐明 PLA BthTX-I 的作用机制及其在癌症治疗策略中的可能用途。