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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Survey of normal appearing mouse strain which lacks malic enzyme and NAD~+-linked glycerol phosphate dehydrogenase: Normal pancreatic beta cell function, but abnormal metabolite pattern in skeletal muscle
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Survey of normal appearing mouse strain which lacks malic enzyme and NAD~+-linked glycerol phosphate dehydrogenase: Normal pancreatic beta cell function, but abnormal metabolite pattern in skeletal muscle

机译:缺少苹果酸酶和NAD〜+连接的甘油磷酸脱氢酶的正常出现小鼠品系的调查:正常胰腺β细胞功能,但骨骼肌代谢模式异常

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We studied a mouse doubly homozygous for mutations in the genes encoding malic enzyme (EC1.1.1.40) and cytosolic glycerol phosphate dehydrogenase (EC 1.1.1.8) (cGPD). This mouse, which we call the mmgg mouse and which is the product of intercrosses between the Mod-1 mouse and the BALB/cHeA mouse, lacks activity of both enzymes. Like both parental strains the mmgg mouse is completely normal in appearance. cGPD is one of the two enzymes that catalyze the reactions of the glycerol phosphate shuttle. The activity of the other enzyme of the glycerol phosphate shuttle, mitochondrial glycerol phosphate dehydrogenase (EC 1.1.99.5) (mGPD), is abundant in tissues, such as brain, skeletal muscle and the pancreatic islet, suggesting that the glycerol phosphate shuttle is important in these tissues which rapidly metabolize glucose. Cytosolic malic enzyme activity is important for shuttles which transport NADPH equivalents from mitochondria to the cytosol. The major finding of the study was a highly abnormal metabolite pattern in tissues of the mmgg mouse suggesting a block in the glycerol phosphate shuttle due to cGPD deficiency. The metabolite pattern did not suggest that malic enzyme deficiency caused an abnormality. Tissue levels of glycerol phosphate (low) and dihydroxyacetone phosphate (high) were only abnormal in skeletal muscle. Glycolytic intermediates, situated at or before the triose phosphates in the pathway, such as fructose bisphosphate and glyceraldehyde phosphate were increased depending on the tissue. Taken together with previous extensive data on the mouse deficient only in cGPD, this suggests a block in glycolysis at the step catalyzed by glyceraldehyde phosphate dehydrogenase caused by an abnormally low NAD/NADH ratio resulting from a nonfunctional glycerol phosphate shuttle. Consistent with this idea the lactate/pyruvate ratio was high in skeletal muscle signifying a low cytosolic NAD/NADH ratio. The mmgg mouse was normal in all other factors studied including blood glucose and serum insulin levels, pancreatic islet mass, insulin release from isolated pancreatic islets, as well as the activities of five metabolic enzymes, including mGPD, in liver, kidney, skeletal muscle and pancreatic islets. cGPD enzyme activity was undetectable in pancreatic islets, 0.5% of normal in liver, and 2.1% of normal in kidney and skeletal muscle. Malic enzyme activity was undetectable in these same tissues.
机译:我们研究了小鼠双纯合子中编码苹果酸酶(EC1.1.1.40)和胞质甘油磷酸磷酸脱氢酶(EC 1.1.1.8)(cGPD)的基因突变。这种小鼠,我们称为mmgg小鼠,是Mod-1小鼠和BALB / cHeA小鼠之间杂交的产物,缺乏两种酶的活性。像两个亲本菌株一样,mmgg小鼠的外观完全正常。 cGPD是催化磷酸甘油酯穿梭反应的两种酶之一。磷酸甘油酯穿梭酶的另一种酶,线粒体磷酸甘油酯脱氢酶(EC 1.1.99.5)(mGPD)的活性在脑,骨骼肌和胰岛等组织中含量很高,这表明磷酸甘油酯穿梭酶很重要在这些组织中会迅速代谢葡萄糖。胞质苹果酸酶活性对于将NADPH等效物从线粒体转运到细胞质的穿梭非常重要。这项研究的主要发现是mmgg小鼠组织中高度异常的代谢产物模式,提示由于cGPD缺乏导致甘油磷酸酯穿梭受阻。代谢模式并不表明苹果酸酶缺乏引起异常。磷酸甘油(低)和磷酸二羟基丙酮(高)的组织水平仅在骨骼肌中异常。糖酵解中间体(位于果糖中的双磷酸果糖和甘油醛磷酸酯)位于该途径中的磷酸三糖磷酸处或之前,视组织而异。再加上以前仅对cGPD缺乏的小鼠的大量数据,这表明由磷酸甘油醛脱氢酶催化的步骤中的糖酵解受阻,这是由非功能性磷酸甘油酯穿梭导致的异常低的NAD / NADH比引起的。与此想法相一致,骨骼肌中的乳酸/丙酮酸比例很高,表明细胞质的NAD / NADH比例较低。在所有其他研究的因素中,mmgg小鼠均正常,包括血糖和血清胰岛素水平,胰岛质量,分离的胰岛中胰岛素的释放以及肝,肾,骨骼肌和肝脏中五种代谢酶(包括mGPD)的活性。胰岛。在胰岛中未检测到cGPD酶活性,在肝脏中检测不到cGPD酶的活性,在肾脏和骨骼肌中检测不到cGPD酶的活性的2.1%。在这些相同的组织中无法检测到苹果酸酶活性。

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