Šešelja Kate, Bazina Iva, Vrecl Milka, Welss Jessica, Schicht Martin, Mihalj Martina, Kopačin Vjekoslav, Paulsen Friedrich, Pirman Tatjana, Baus Lončar Mirela
Divison of Molecular Medicine, Ruđer Boškovic Institute, Bjenicka 54, 10000 Zagreb, Croatia.
Institute of Preclinical Sciences, Veterinary Faculty, University of Ljubljana, Gerbiceva 60, 1000 Ljubljana, Slovenia.
Life (Basel). 2022 Aug 22;12(8):1288. doi: 10.3390/life12081288.
Trefoil factor 3 (Tff3) protein is a small secretory protein expressed on various mucosal surfaces and is involved in proper mucosal function and recovery via various mechanisms, including immune response. However, Tff3 is also found in the bloodstream and in various other tissues, including the liver. Its complete attenuation was observed as the most prominent event in the early phase of diabetes in the polygenic Tally Ho mouse model of diabesity. Since then, its role in metabolic processes has emerged. To elucidate the complex role of Tff3, we used a new Tff3-deficient mouse model without additional metabolically relevant mutations (-/-/C57BL/6NCrl) and exposed it to a high-fat diet (HFD) for a prolonged period (8 months). The effect was observed in male and female mice compared to wild-type (WT) counter groups ( = 10 animals per group). We monitored the animals' general metabolic parameters, liver morphology, ultrastructure and molecular genes in relevant lipid and inflammatory pathways. Tff3-deficient male mice had reduced body weight and better glucose utilization after 17 weeks of HFD, but longer HFD exposure (32 weeks) resulted in no such change. We found a strong reduction in lipid accumulation in male -/-/C57BL/6NCrl mice and a less prominent reduction in female mice. This was associated with downregulated peroxisome proliferator-activated receptor gamma (Pparγ) and upregulated interleukin-6 (Il-6) gene expression, although protein level difference did not reach statistical significance due to higher individual variations. -/-/C57Bl6N mice of both sex had reduced liver steatosis, without major fatty acid content perturbations. Our research shows that Tff3 protein is clearly involved in complex metabolic pathways. Tff3 deficiency in C57Bl6N genetic background caused reduced lipid accumulation in the liver; further research is needed to elucidate its precise role in metabolism-related events.
三叶因子3(Tff3)蛋白是一种在各种黏膜表面表达的小分泌蛋白,通过包括免疫反应在内的多种机制参与正常的黏膜功能和恢复。然而,Tff3也存在于血液和包括肝脏在内的各种其他组织中。在多基因糖尿病肥胖Tally Ho小鼠模型中,其完全衰减被观察到是糖尿病早期最显著的事件。从那时起,它在代谢过程中的作用逐渐显现。为了阐明Tff3的复杂作用,我们使用了一种新的Tff3基因敲除小鼠模型(-/-/C57BL/6NCrl),该模型没有额外的代谢相关突变,并将其长期(8个月)暴露于高脂饮食(HFD)中。与野生型(WT)对照组(每组 = 10只动物)相比,在雄性和雌性小鼠中观察到了这种效应。我们监测了动物的一般代谢参数、肝脏形态、超微结构以及相关脂质和炎症途径中的分子基因。高脂饮食17周后,Tff3基因敲除的雄性小鼠体重减轻,葡萄糖利用率提高,但更长时间的高脂饮食暴露(32周)并未导致这种变化。我们发现雄性-/-/C57BL/6NCrl小鼠的脂质积累显著减少,而雌性小鼠的减少则不太明显。这与过氧化物酶体增殖物激活受体γ(Pparγ)下调和白细胞介素-6(Il-6)基因表达上调有关,尽管由于个体差异较大,蛋白质水平差异未达到统计学意义。两种性别的-/-/C57Bl6N小鼠肝脂肪变性均减轻,且主要脂肪酸含量无明显扰动。我们的研究表明,Tff3蛋白明显参与复杂的代谢途径。C57Bl6N遗传背景下的Tff3缺乏导致肝脏脂质积累减少;需要进一步研究以阐明其在代谢相关事件中的精确作用。