McCord James, Lang Johnsie R, Hill Donna, Strynar Mark, Chernoff Neil
Oak Ridge Institute for Science and Education, Oak Ridge, TN 37831, USA E-mail:
National Health and Environmental Effects Research Laboratory, US Environmental Protection Agency, Research Triangle Park, NC 27711, USA.
J Water Health. 2018 Jun;16(3):340-345. doi: 10.2166/wh.2018.257.
Hazardous algal blooms can generate toxic compounds with significant health impacts for exposed communities. The ubiquitous class of algal toxins known as microcystins exhibits significant heterogeneity in its peptide structure, which has been minimally studied, given the significant impact this has on hydrophobicity, acid/base character and related environmental fate and health effects. Octanol-water partition coefficients for the microcystin congeners MCLR, MCRR, MCLY, MCLF, and MCLA were calculated over an environmentally and physiologically relevant pH range. Microcystin-LR log(K) partition coefficient values were found to be consistent with previously established literature values, 1.67 to -1.41 between pH 1 and 8. Microcystin RR was found to be pH insensitive with a log(K) of -0.7. The remaining congeners exhibit similar pH dependence as MCLR, with systematic increases in hydrophobicity driven by the introduction of more hydrophobic residues to their variable amino acid region. The variation in pH dependent hydrophobicity suggests increased propensity for bioaccumulation and alternate environmental fates for differing microcystin forms, requiring further investigation.
有害藻华可产生有毒化合物,对接触到的社区的健康产生重大影响。一类普遍存在的藻毒素,即微囊藻毒素,其肽结构存在显著的异质性,但鉴于其对疏水性、酸碱性质以及相关环境归宿和健康影响具有重大作用,这方面的研究极少。在环境和生理相关的pH范围内,计算了微囊藻毒素同系物MCLR、MCRR、MCLY、MCLF和MCLA的正辛醇-水分配系数。发现微囊藻毒素-LR的log(K)分配系数值与先前文献报道的值一致,在pH值1至8之间为1.67至-1.41。发现微囊藻毒素RR对pH不敏感,log(K)为-0.7。其余同系物表现出与MCLR相似的pH依赖性,随着在其可变氨基酸区域引入更多疏水残基,疏水性会系统性增加。pH依赖性疏水性的变化表明不同形式的微囊藻毒素生物累积倾向增加,环境归宿也有所不同,这需要进一步研究。