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首页> 外文期刊>The Journal of Nutritional Biochemistry >Dietary cystine level affects metabolic rate and glycaemic control in adult mice.
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Dietary cystine level affects metabolic rate and glycaemic control in adult mice.

机译:膳食胱氨酸水平会影响成年小鼠的代谢率和血糖控制。

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Plasma total cysteine (tCys) is strongly and independently associated with obesity in large human cohorts, but whether the association is causal is unknown. Dietary cyst(e)ine increases weight gain in some rodent models. We investigated the body composition, metabolic rate and metabolic phenotype of mature C3H/HeH mice assigned to low-cystine (LC) or high-cystine (HC) diets for 12 weeks. Compared to LC mice, HC mice gained more weight (P=.004 for 12-week weight gain %), with increased fat mass and lean mass, and lowered O2 consumption and CO2 production by calorimetry. The HC mice had 30% increase in intestinal fat/body weight % (P=.003) and approx. equal to twofold elevated hepatic triglycerides (P=.046), with increased expression of hepatic lipogenic factors, peroxisome proliferator-activated receptor- gamma and sterol regulatory element binding protein-1. Gene expression of both basal and catecholamine-stimulated lipolytic enzymes, adipose triglyceride lipase and hormone-sensitive lipase was inhibited in HC mice adipose tissue. The HC mice also had elevated fasting glucose (7.0 vs. 4.5 mmol/L, P<.001) and a greater area under the curve (P<.001) in intraperitoneal glucose tolerance tests, with enhanced expression of the negative regulator of insulin signaling, protein tyrosine phosphatase-1B, in liver and adipose tissue. Overall, high cystine intake promotes adiposity and an adverse metabolic phenotype in mice, indicating that the positive association of plasma tCys with obesity in humans may be causal.
机译:在大型人群中,血浆总半胱氨酸(tCys)与肥胖密切相关,但这种相关性是否是因果关系尚不清楚。在某些啮齿动物模型中,膳食半胱氨酸增加了体重。我们调查了分配给低胱氨酸(LC)或高胱氨酸(HC)饮食的成熟C3H / HeH小鼠的身体成分,代谢率和代谢表型,持续12周。与LC小鼠相比,HC小鼠体重增加(P = .004,为12周体重增加%),脂肪含量和瘦体重增加,O 2 消耗量和CO 2降低量热法生产。 HC小鼠的肠内脂肪/体重%增加了30%(P = .003),大约增加了30%。相当于肝甘油三酯升高的两倍(P = .046),肝脂肪生成因子,过氧化物酶体增殖物激活的受体-γ和固醇调节元件结合蛋白-1的表达增加。 HC小鼠脂肪组织中基础和儿茶酚胺刺激的脂解酶,脂肪甘油三酸酯脂肪酶和激素敏感性脂肪酶的基因表达均受到抑制。 HC小鼠在腹腔葡萄糖耐量试验中的空腹血糖也升高(7.0 vs. 4.5 mmol / L,P <.001),曲线下面积更大(P <.001),胰岛素负调节剂的表达增强信号转导蛋白,酪氨酸磷酸酶-1B,在肝脏和脂肪组织中。总的来说,高胱氨酸摄入量会促进肥胖和小鼠不良的代谢表型,表明血浆tCys与肥胖症的正相关可能是因果关系。

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