Yang Y T, White L S, Muir L A
J Anim Sci. 1982 Aug;55(2):313-20. doi: 10.2527/jas1982.552313x.
Isolated ovine adipocytes were incubated in vitro with specifically labeled 14C-glucose in the presence or absence of acetate. The flux patterns of glucose carbon through major metabolic pathways were estimated. When glucose was added as the sole substrate, approximately equal portions of glucose carbon (10%) were oxidized to CO2 in the pentose phosphate pathway, in the pyruvate dehydrogenase reaction and in the citrate cycle. Fifteen percent of the glucose carbon was incorporated into fatty acids and 43% was released as lactate and pyruvate. Addition of acetate to the medium increased glucose carbon uptake by 1.5-fold. Most of this increase was accounted for by a sevenfold increase in the activity of the pentose phosphate pathway. Acetate increased glucose carbon fluxes via pentose phosphate pathway to triose phosphates, from triose phosphate to pyruvate, into glyceride glycerol, into lactate and pyruvate and into pyruvate dehydrogenase and citrate cycle CO2. Glucose carbon incorporated into fatty acids was decreased 50% by acetate while, carbon fluxes through the phosphofructokinase-aldolase reactions were not significantly increased. Results of this study suggest that, when glucose is the sole substrate, the conversion of glucose to fatty acids in ovine adipocytes may not be limited by the maximum capacity of hexokinase, the pentose phosphate pathway or enzymes involved in the conversion of triose phosphates to pyruvate and of pyruvate to fatty acid. Acetate increased glucose utilization apparently by increasing activity of the pentose phosphate pathway as a result of enhanced NADPH utilization for fatty acid synthesis.
将分离出的绵羊脂肪细胞在有或没有乙酸盐存在的情况下,与经过特殊标记的(^{14}C)葡萄糖一起进行体外培养。估算了葡萄糖碳通过主要代谢途径的通量模式。当仅添加葡萄糖作为底物时,大约相等比例的葡萄糖碳(10%)在磷酸戊糖途径、丙酮酸脱氢酶反应和柠檬酸循环中被氧化为(CO_2)。15%的葡萄糖碳被整合到脂肪酸中,43%以乳酸和丙酮酸的形式释放。向培养基中添加乙酸盐使葡萄糖碳的摄取增加了1.5倍。这种增加大部分是由于磷酸戊糖途径的活性增加了7倍。乙酸盐增加了葡萄糖碳从磷酸戊糖途径到磷酸丙糖、从磷酸丙糖到丙酮酸、进入甘油甘油、进入乳酸和丙酮酸以及进入丙酮酸脱氢酶和柠檬酸循环生成(CO_2)的通量。乙酸盐使整合到脂肪酸中的葡萄糖碳减少了50%,而通过磷酸果糖激酶 - 醛缩酶反应的碳通量没有显著增加。这项研究的结果表明,当葡萄糖是唯一底物时,绵羊脂肪细胞中葡萄糖向脂肪酸的转化可能不受己糖激酶、磷酸戊糖途径或参与磷酸丙糖向丙酮酸以及丙酮酸向脂肪酸转化的酶的最大能力的限制。乙酸盐显然是通过增加磷酸戊糖途径的活性来提高葡萄糖的利用率,这是由于脂肪酸合成中对NADPH的利用增加所致。