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生长和衰老蚊子中的烟酰胺腺嘌呤二核苷酸焦磷酸酶

Nicotinamide-adenine dinucleotide pyrophosphatase in the growing and aging mosquito.

作者信息

Anderson B M, Lang C A

出版信息

Biochem J. 1966 Nov;101(2):392-6. doi: 10.1042/bj1010392.

Abstract
  1. The disappearance of pyridine nucleotides during incubation with mosquito homogenates proceeds through the hydrolysis of the pyrophosphate linkage of these compounds as demonstrated by the formation of NMN and AMP from NAD(+). This reaction was also demonstrated by the loss in the coenzyme functioning property of NAD(+) (yeast alcohol dehydrogenase reaction) without a concomitant loss in reactivity towards cyanide. Transglycosidase activity was not observed in the mosquito homogenates, and low concentrations of nicotinamide did not inhibit the NAD(+) splitting activity of these homogenates. These observations are all in accord with the presence in these homogenates of a NAD(+) pyrophosphatase rather than a NADase. 2. The NAD(+) pyrophosphatase is destroyed by boiling, is not heat-activated, and has a pH optimum at pH8.75. In addition to NAD(+), other dinucleotides such as NADP(+), the 3-acetylpyridine and thionicotinamide analogues of NAD(+) and the thionicotinamide analogue of NADP(+), function as substrates in the hydrolysis catalysed by the pyrophosphatase. 3. A decrease in the specific activity of NAD(+) pyrophosphatase was observed during larval development, and a barely detectable activity was found in the pupa and adult. 4. Enzyme activity per organism increased in the larva but decreased to a very low value in the pupa and adult. These results indicate that the decrease in specific activity was due to a decrease in enzyme concentration rather than an increase in amounts of protein.
摘要
  1. 与蚊虫匀浆一起温育时,吡啶核苷酸的消失是通过这些化合物焦磷酸键的水解进行的,这一点由NAD(+)形成NMN和AMP得以证明。NAD(+)辅酶功能特性的丧失(酵母乙醇脱氢酶反应)也证明了该反应,同时其对氰化物的反应性并未伴随丧失。在蚊虫匀浆中未观察到转糖苷酶活性,低浓度的烟酰胺也不抑制这些匀浆的NAD(+)裂解活性。这些观察结果均与这些匀浆中存在NAD(+)焦磷酸酶而非NAD酶一致。2. NAD(+)焦磷酸酶经煮沸会被破坏,无热激活现象,最适pH值为8.75。除NAD(+)外,其他二核苷酸如NADP(+)、NAD(+)的3-乙酰吡啶和硫代烟酰胺类似物以及NADP(+)的硫代烟酰胺类似物,均可作为焦磷酸酶催化水解的底物。3. 在幼虫发育过程中观察到NAD(+)焦磷酸酶的比活性降低,在蛹和成虫中活性几乎检测不到。4. 每个生物体的酶活性在幼虫中增加,但在蛹和成虫中降至非常低的值。这些结果表明,比活性的降低是由于酶浓度的降低而非蛋白质含量的增加。

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Cytochrome C reductase activities during development.发育过程中的细胞色素C还原酶活性。
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