Kumar Arun, Joishy Tulsi, Das Santanu, Kalita Mohan C, Mukherjee Ashis K, Khan Mojibur R
Molecular Biology and Microbial Biotechnology Laboratory, Division of Life Sciences, Institute of Advanced Study in Science and Technology (IASST), Guwahati 781035, Assam, India.
Department of Biotechnology, Gauhati University, Guwahati 781014, Assam, India.
Antioxidants (Basel). 2022 Jan 28;11(2):268. doi: 10.3390/antiox11020268.
Since the hypothesis of Dr. Elie Metchnikoff on lactobacilli-mediated healthy aging, several microbes have been reported to extend the lifespan with different features of healthy aging. However, a microbe affecting diverse features of healthy aging is of choice for broader acceptance and marketability as a next-generation probiotic. We employed as a model to understand the potential of JBC5 (LPJBC5), isolated from fermented food sample on longevity and healthy aging as well as their underlying mechanisms. Firstly, LPJBC5 enhanced the mean lifespan of by 27.81% compared with control (untreated). LPBC5-induced longevity was accompanied with better aging-associated biomarkers, such as physical functions, fat, and lipofuscin accumulation. Lifespan assay on mutant worms and gene expression studies indicated that LPJBC5-mediated longevity was due to upregulation of the skinhead-1 () gene activated through p38 MAPK signaling cascade. Secondly, the activated transcription factor SKN-1 upregulated the expression of antioxidative, thermo-tolerant, and anti-pathogenic genes. In support, LPJBC5 conferred resistance against abiotic and biotic stresses such as oxidative, heat, and pathogen. LPJBC5 upregulated the expression of intestinal tight junction protein ZOO-1 and improved gut integrity. Thirdly, LPJBC5 improved the learning and memory of worms trained on LPJBC5 compared with naive worms. The results showed upregulation of genes involved in serotonin signaling (, , and ) in LPJBC5-fed worms compared with control, suggesting that serotonin-signaling was essential for LPJBC5-mediated improved cognitive function. Fourthly, LPJBC5 decreased the fat accumulation in worms by reducing the expression of genes encoding key substrates and enzymes of fat metabolism (i.e., and ). Lastly, LPJBC5 reduced the production of reactive oxygen species and improved mitochondrial function, thereby reducing apoptosis in worms. The capability of a single bacterium on pro-longevity and the features of healthy aging, including enhancement of gut integrity and cognitive functions, makes it an ideal candidate for promotion as a next-generation probiotic.
自从埃黎·梅契尼科夫博士提出乳酸菌介导的健康衰老假说以来,已有多种微生物被报道具有延长寿命以及呈现健康衰老不同特征的作用。然而,一种能影响健康衰老多种特征的微生物对于作为下一代益生菌被更广泛接受和推向市场来说是更理想的选择。我们以从发酵食品样本中分离出的JBC5(LPJBC5)作为模型,来了解其在长寿和健康衰老方面的潜力及其潜在机制。首先,与对照组(未处理组)相比,LPJBC5使秀丽隐杆线虫的平均寿命延长了27.81%。LPBC5诱导的长寿伴随着更好的与衰老相关的生物标志物,如身体机能、脂肪和脂褐素积累。对突变线虫的寿命测定和基因表达研究表明,LPJBC5介导的长寿是由于通过p38丝裂原活化蛋白激酶信号级联激活的skinhead-1(skn-1)基因上调所致。其次,活化的转录因子SKN-1上调了抗氧化、耐热和抗病原体基因的表达。此外,LPJBC5赋予了线虫对非生物和生物胁迫(如氧化、热和病原体)的抗性。LPJBC5上调了肠道紧密连接蛋白ZOO-1的表达并改善了肠道完整性。第三,与未接触过LPJBC5的线虫相比,LPJBC5改善了经LPJBC5处理训练的线虫的学习和记忆能力。结果显示,与对照组相比,喂食LPJBC5的线虫中参与血清素信号传导的基因(tph-1、ser-4和ser-7)上调,这表明血清素信号传导对于LPJBC5介导的认知功能改善至关重要。第四,LPJBC5通过降低编码脂肪代谢关键底物和酶的基因(即acdh-1和fat-7)的表达,减少了线虫体内的脂肪积累。最后,LPJBC5减少了活性氧的产生并改善了线粒体功能,从而减少了线虫的细胞凋亡。一种单一细菌具有延长寿命以及健康衰老的特征,包括增强肠道完整性和认知功能,这使其成为推广作为下一代益生菌的理想候选者。