Dhandapani Praveen K, Lyyski Annina M, Paulin Lars, Khan Nahid A, Suomalainen Anu, Auvinen Petri, Dufour Eric, Szibor Marten, Jacobs Howard T
Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.
Institute of Biotechnology, University of Helsinki, Helsinki, Finland.
Physiol Rep. 2019 Aug;7(13):e14159. doi: 10.14814/phy2.14159.
The alternative oxidase (AOX) from Ciona intestinalis was previously shown to be expressible in mice and to cause no physiological disturbance under unstressed conditions. Because AOX is known to become activated under some metabolic stress conditions, resulting in altered energy balance, we studied its effects in mice subjected to dietary stress. Wild-type mice (Mus musculus, strain C57BL/6JOlaHsd) fed a high-fat or ketogenic (high-fat, low-carbohydrate) diet show weight gain with increased fat mass, as well as loss of performance, compared with chow-fed animals. Unexpectedly, AOX-expressing mice fed on these metabolically stressful, fat-rich diets showed almost indistinguishable patterns of weight gain and altered body composition as control animals. Cardiac performance was impaired to a similar extent by ketogenic diet in AOX mice as in nontransgenic littermates. AOX and control animals fed on ketogenic diet both showed wide variance in weight gain. Analysis of the gut microbiome in stool revealed a strong correlation with diet, rather than with genotype. The microbiome of the most and least obese outliers reared on the ketogenic diet showed no consistent trends compared with animals of normal body weight. We conclude that AOX expression in mice does not modify physiological responses to extreme diets.
先前的研究表明,来自玻璃海鞘的交替氧化酶(AOX)可在小鼠中表达,并且在无应激条件下不会引起生理紊乱。由于已知AOX在某些代谢应激条件下会被激活,从而导致能量平衡改变,因此我们研究了其在遭受饮食应激的小鼠中的作用。与喂食普通饲料的动物相比,喂食高脂肪或生酮(高脂肪、低碳水化合物)饮食的野生型小鼠(小家鼠,C57BL/6JOlaHsd品系)体重增加,脂肪量增加,同时表现下降。出乎意料的是,以这些代谢应激、富含脂肪的饮食喂养的表达AOX的小鼠,其体重增加模式和身体成分变化与对照动物几乎没有区别。生酮饮食对AOX小鼠心脏功能的损害程度与非转基因同窝小鼠相似。喂食生酮饮食的AOX小鼠和对照动物在体重增加方面均表现出很大差异。对粪便中肠道微生物群的分析表明,其与饮食密切相关,而非与基因型相关。与正常体重的动物相比,以生酮饮食饲养的最肥胖和最不肥胖的异常值小鼠的微生物群没有一致的趋势。我们得出结论,小鼠中AOX的表达不会改变对极端饮食的生理反应。