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AS-30D肝癌细胞中的乙酰乙酸代谢

Acetoacetate metabolism in AS-30D hepatoma cells.

作者信息

Briscoe D A, Fiskum G, Holleran A L, Kelleher J K

机构信息

Department of Physiology, George Washington University, School of Medicine and Health Sciences, Washington, D.C. 20037.

出版信息

Mol Cell Biochem. 1994 Jul 27;136(2):131-7. doi: 10.1007/BF00926073.

Abstract

Metabolic characteristics of experimental hepatoma cells include elevated rates of glycolysis and lipid synthesis. However, pyruvate derived from glucose is not redily oxidized, and the source of acetyl CoA for lipid synthesis in As-39D cells has not been characterized. In this study ketone bodies were examined as a possible source of acetyl CoA in AS-30D hepatoma cells. The major findings were: 1. Acetoacetate was utilized by AS-30D cells, with 14C-lipid and 14CO2 as major products of [3-14C] acetoacetate. 2. Lipid synthesis from acetoacetate was dependent on the presence of glucose in the medium. 3. Acetoacetate supported rapid respiration by AS-30D mitochondria in the presence of 0.1 mM malate. 4. Succinyl CoA acetoacetyl CoA transferase activity in AS-30D mitochondria was approximately 40 fold greater than that found in rat liver mitochondria. 5. Addition of acetoacetate, but not beta-hydroxybutyrate decreased conversion of [1-14C] acetate to 14CO2, presumably by diluting the specific radioactivity of the acetyl CoA derived from the acetate tracer. 6. In the presence of glucose, approximately one fourth of acetoacetate utilized was converted to lipid. This result is consistent with elevated lipogenesis postulated by the truncated TCA cycle hypothesis.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

实验性肝癌细胞的代谢特征包括糖酵解和脂质合成速率升高。然而,由葡萄糖衍生的丙酮酸不易被氧化,并且AS - 39D细胞中脂质合成的乙酰辅酶A来源尚未明确。在本研究中,对酮体作为AS - 30D肝癌细胞中乙酰辅酶A的可能来源进行了检测。主要发现如下:1. 乙酰乙酸被AS - 30D细胞利用,[3 - 14C]乙酰乙酸的主要产物是14C - 脂质和14CO2。2. 从乙酰乙酸合成脂质依赖于培养基中葡萄糖的存在。3. 在0.1 mM苹果酸存在下,乙酰乙酸支持AS - 30D线粒体的快速呼吸。4. AS - 30D线粒体中琥珀酰辅酶A - 乙酰乙酰辅酶A转移酶活性比大鼠肝脏线粒体中高约40倍。5. 添加乙酰乙酸而非β - 羟基丁酸可降低[1 - 14C]乙酸向14CO2的转化,推测是通过稀释由乙酸示踪剂衍生的乙酰辅酶A的比放射性。6. 在有葡萄糖存在的情况下,所利用的乙酰乙酸约四分之一转化为脂质。该结果与截短的三羧酸循环假说所假定的脂肪生成增加一致。(摘要截短至250字)

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