Kim Nari, Lee Sekyung, Jung Eun-Jin, Jung Eun Young, Chang Un-Jae, Jin Cheng-Min, Suh Hyung Joo, Choi Hyeon-Son
Department of Integrated Biomedical and Life Science, Graduate School, Korea University, Seoul 02841, Republic of Korea.
Transdisciplinary Major in Learning Health Systems, Department of Healthcare Sciences, Graduate School, Korea University, Seoul 02841, Republic of Korea.
Foods. 2023 Sep 18;12(18):3466. doi: 10.3390/foods12183466.
This study aimed to investigate the impact of yeast hydrolysate (YH) on lipogenesis, elucidate its mechanistic action, and identify the active compounds responsible for its anti-adipogenic effects. YH (2 mg/mL) significantly reduced Oil Red O-stained lipids. YH (2 mg/mL) also downregulated C/EBPβ and upregulated KLF2, both of which are early adipogenic factors. Moreover, YH (2 mg/mL) decreased C/EBPα, PPARγ, FABP4, FAS, ACC, and HMGCR mRNA expression. Additionally, YH significantly downregulated SEBP1c and SREBP2 and their target genes, which govern fatty acid and cholesterol metabolism; however, 2 mg/mL YH had a greater suppressive effect on SREBP1c than on SREBP2. YH (2 mg/mL) also significantly reduced the mRNA level of G6PD and malic enzyme, which are enzymes that synthesize NADPH for lipid synthesis, compared with the control. Furthermore, 1-methyl-1,2,3,4-tetrahydro-β-carboline-3-carboxylic acid (MTCA) was identified as the active compound with anti-adipogenic effects using solvent fractionation and chromatographic analysis of YH, and 1.1 μg/mL MTCA significantly downregulated SREBP1c/SREBP2 mRNAs by 47.8% and 69.2%, respectively, along with the target genes FAS, ACC, and HMGCR by 79.0%, 77.0%, and 40.9%, respectively. Collectively, YH effectively suppressed adipogenic lipid storage by downregulating SREBP- and NADPH-synthesizing genes. These findings suggest that YH containing MTCA has the potential to act as an anti-obesity agent.
本研究旨在探讨酵母水解物(YH)对脂肪生成的影响,阐明其作用机制,并确定其抗脂肪生成作用的活性化合物。YH(2mg/mL)显著减少了油红O染色的脂质。YH(2mg/mL)还下调了C/EBPβ并上调了KLF2,二者均为早期脂肪生成因子。此外,YH(2mg/mL)降低了C/EBPα、PPARγ、FABP4、FAS、ACC和HMGCR的mRNA表达。此外,YH显著下调了SEBP1c和SREBP2及其调控脂肪酸和胆固醇代谢的靶基因;然而,2mg/mL的YH对SREBP1c的抑制作用比对SREBP2更强。与对照组相比,YH(2mg/mL)还显著降低了G6PD和苹果酸酶的mRNA水平,这两种酶是为脂质合成合成NADPH的酶。此外,通过对YH进行溶剂分级分离和色谱分析,确定1-甲基-1,2,3,4-四氢-β-咔啉-3-羧酸(MTCA)为具有抗脂肪生成作用的活性化合物,1.1μg/mL的MTCA分别使SREBP1c/SREBP2的mRNA显著下调47.8%和69.2%,同时使靶基因FAS、ACC和HMGCR分别下调79.0%、77.0%和40.9%。总体而言,YH通过下调SREBP和NADPH合成基因有效抑制了脂肪生成性脂质储存。这些发现表明,含有MTCA的YH有潜力作为一种抗肥胖剂。