McCue Patrick P, Phang James M
National Center for Complementary and Alternative Medicine, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Agric Food Chem. 2008 Nov 26;56(22):11011-7. doi: 10.1021/jf801593a.
St. John's wort (SJW; Hypericum perforatum L.) is commonly known for its antidepressant properties and was traditionally used to promote wound healing, but its molecular mechanism of action is not known. Here, chemical-genetic profiling in yeast was used to predict the human intracellular targets of an aqueous extract of SJW. SJW source material was authenticated by TLC, digital microscopy, and HPLC and further characterized by colorimetric methods for antioxidant activity, protein content, and total soluble phenolic content. SJW extract contained 1.76 microg/mL hyperforin, 10.14 microg/mL hypericin, and 46.05 microg/mL pseudohypericin. The effect of SJW extract on approximately 5900 barcoded heterozygous diploid deletion strains of Saccharomyces cerevisiae was investigated using high-density oligonucleotide microarrays. Seventy-eight yeast genes were identified as sensitive to SJW and were primarily associated with vesicle-mediated transport and signal transduction pathways. Potential human intracellular targets were identified using sequence-based comparisons and included proteins associated with neurological disease and angiogenesis-related pathways. Selected human targets were confirmed by cell-based immunocytochemical assays. The comprehensive and systematic nature of chemical-genetic profiling in yeast makes this technique attractive for elucidating the potential molecular mechanisms of action of botanical medicines and other bioactive dietary plants.
圣约翰草(SJW;贯叶连翘)因其抗抑郁特性而广为人知,传统上用于促进伤口愈合,但其作用的分子机制尚不清楚。在此,利用酵母中的化学遗传学分析来预测圣约翰草水提取物的人类细胞内靶点。圣约翰草原料通过薄层色谱法(TLC)、数字显微镜和高效液相色谱法(HPLC)进行鉴定,并通过比色法进一步表征其抗氧化活性、蛋白质含量和总可溶性酚含量。圣约翰草提取物含有1.76微克/毫升金丝桃素、10.14微克/毫升金丝桃蒽酮和46.05微克/毫升假金丝桃蒽酮。使用高密度寡核苷酸微阵列研究了圣约翰草提取物对约5900个带有条形码的酿酒酵母杂合二倍体缺失菌株的影响。78个酵母基因被鉴定为对圣约翰草敏感,主要与囊泡介导的运输和信号转导途径相关。通过基于序列的比较确定了潜在的人类细胞内靶点,包括与神经疾病和血管生成相关途径相关的蛋白质。选定的人类靶点通过基于细胞的免疫细胞化学分析得到证实。酵母中化学遗传学分析的全面性和系统性使得该技术在阐明植物药和其他具有生物活性的食用植物的潜在分子作用机制方面具有吸引力。