Probiotic Protects Kidneys Exposed to Microcystin-LR

Yolanda Hu, Irene Sun, Eric Tang, William G. Ryan, Upasana Shrestha, Jyotshana Gautam, Apurva Lad, Jason F. Huntley, Steven Haller, David Kennedy
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Abstract

Cyanobacterial Harmful Algal Blooms (CyanoHABs) occur when colonies of photosynthetic bacteria called cyanobacteria grow out of control, usually in warm, nutrient-rich, slow-moving waters. They are becoming increasingly prevalent around the world and release harmful toxins called cyanotoxins into bodies of water, which negatively affect human and ecological health. One such cyanotoxin is microcystin, with microcystin-leucine arginine (MC-LR) being the most widespread. Exposure to MC-LR inhibits serine and threonine protein phosphatase 1 and 2A in humans, causing a myriad of health problems. Fortunately, certain naturally occurring bacteria may be able to degrade MC-LR and reverse its effects. Mice were separated into five experimental groups based on three types of pre-treatments (control drinking water/vehicle, probiotic-supplemented drinking water, and heat-inactivated probiotic-supplemented drinking water) as well as two types of exposures (microcystin-LR and water/vehicle). RNA was extracted from kidneys for sequencing because MC-LR exacerbates kidney disease. Gene expression data were analyzed with 3 Pod Reports, an R package that produces a three-part report consisting of Gene Set Enrichment Analysis (GSEA), EnrichR, and integrative LINCS (iLINCS). MC-LR exposure was associated with upregulated cellular respiration and metabolism pathways and downregulated transcription pathways. Probiotic pre-treatment combined with MC-LR exposure was associated with upregulated lipoprotein particle pathways and downregulated respiration and ribosome pathways. Overall, the probiotic mixture corrected the transcriptional profile resulting from MC-LR exposure. Future high yield pathways that could be targeted for therapeutic benefit include VEGFR inhibitors and increased expression of renal kidney indicator genes such as EGFR.
益生菌能保护暴露于微囊藻毒素-LR 的肾脏
蓝藻有害藻华(Cyanobacterial Harmful Algal Bloom,简称 CyanoHABs)通常发生在温暖、营养丰富、水流缓慢的水域中,当被称为蓝藻的光合细菌群生长失控时就会出现。它们在世界各地越来越普遍,并向水体中释放有害毒素(称为蓝藻毒素),对人类和生态健康造成负面影响。其中一种蓝藻毒素是微囊藻毒素,其中以微囊藻毒素-亮氨酸精氨酸(MC-LR)最为普遍。暴露于 MC-LR 会抑制人类体内的丝氨酸和苏氨酸蛋白磷酸酶 1 和 2A,从而引发各种健康问题。幸运的是,某些天然存在的细菌可能能够降解 MC-LR 并逆转其影响。根据三种预处理(对照饮用水/车辆、添加益生菌的饮用水和加热灭活的添加益生菌的饮用水)和两种暴露(微囊藻毒素-LR和水/车辆),小鼠被分成五个实验组。由于 MC-LR 会加重肾脏疾病,因此从肾脏提取 RNA 进行测序。基因表达数据使用 3 Pod Reports 进行分析,该 R 软件包可生成由基因组富集分析 (GSEA)、EnrichR 和整合 LINCS (iLINCS) 三部分组成的报告。MC-LR暴露与细胞呼吸和代谢途径上调以及转录途径下调有关。益生菌预处理结合 MC-LR 暴露与脂蛋白颗粒通路上调和呼吸与核糖体通路下调有关。总体而言,益生菌混合物纠正了因暴露于 MC-LR 而导致的转录特征。未来可用于治疗的高产途径包括血管内皮生长因子受体抑制剂和肾脏指标基因(如表皮生长因子受体)表达的增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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