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首页> 外文期刊>Diseases of Aquatic Organisms >CO2-fixing enzymes and phosphoenolpyruvate metabolism in the fish parasite Hysterothylacium aduncum (Ascaridoidea, Anisakidae)
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CO2-fixing enzymes and phosphoenolpyruvate metabolism in the fish parasite Hysterothylacium aduncum (Ascaridoidea, Anisakidae)

机译:鱼类寄生虫Hysterothylaciumium aduncum(Ascaridoidea,Anisakidae)中的CO2固定酶和磷酸烯醇丙酮酸代谢

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摘要

CO2 stimulates the development of many of the intestinal helminths that are able to fix CO2 by means of phosphoenolpyruvate carboxykinase (PEPCK), such as Hysterothylacium aduncum. We determined the activity Of CO2-fixing enzymes such as PEPCK and phosphoenolpyruvate carboxylase (PEPC), although no significant activity was detected for pyruvate carboxylase or carboxylating-malic enzyme. The former act on phosphoenolpyruvate (PEP) to yield oxalacetate. In the helminths studied, PEP has a vital role in glucidic metabolism. Consequently, we determined the activity of other enzymes involved in the crossroad of PEP, such as pyruvate kinase (PK), lactate dehydrogenase and malate dehydrogenase. All enzymes detected showed significant variations in activity during the in vitro development of the parasite from the third larval stage to mature adult. Fixing Of CO2 by PEPCK decreased during development (from 228 to 115 nmol min(-1) mg(-1) protein), while that by PEPC increased (from 19 to 46 nmol min(-1) mg(-1) protein). This enzyme, which is rare in animals, could play a part in detecting levels of free phosphate, releasing it from PEP when required for processes such as glycogenolysis, glycolysis and adenosine 5'-triphosphate (ATP) synthesis. PK, which showed increasing activity during development up to immature adult (from 56 to 82 nmol min(-1) mg(-1) protein), could act in combination with PEPC to obtain energy in the cytosol (in the form of ATP) and in the mitochondria (possible destination of the pyruvate formed), compensating for the decrease in activity of PEPCK.
机译:CO2刺激了许多能够通过磷酸烯醇丙酮酸羧激酶(PEPCK)来固定CO2的小肠蠕虫的发展,例如十二生丝藻。尽管未检测到丙酮酸羧化酶或羧化苹果酸酶的显着活性,但我们确定了CO2固定酶(如PEPCK和磷酸烯醇丙酮酸羧化酶)的活性。前者作用于磷酸烯醇丙酮酸(PEP)以产生草酰乙酸。在研究的蠕虫中,PEP在糖代谢中起着至关重要的作用。因此,我们确定了与PEP交界的其他酶的活性,例如丙酮酸激酶(PK),乳酸脱氢酶和苹果酸脱氢酶。从第三个幼虫阶段到成年成虫,在体外寄生虫发育过程中,检测到的所有酶均显示出明显的活性变化。 PEPCK对CO2的固定作用在发育过程中降低(从228 nmol min(-1)mg(-1)蛋白质增加到115 nmol min(-1)),而通过PEPCK的固定作用从开发中的19 nmol min(-1)mg(-1)mg(-1)蛋白增加。 。这种酶(在动物中很少见)可以在检测游离磷酸盐水平中发挥作用,并在糖原分解,糖酵解和5'-三磷酸腺苷(ATP)合成过程中需要时,将其从PEP中释放出来。 PK在发育至未成年的成年动物(从56至82 nmol min(-1)mg(-1)蛋白)中显示出增加的活性,可与PEPC结合使用以在胞质溶胶中获得能量(以ATP的形式)在线粒体(可能形成丙酮酸的目的地)中,可以补偿PEPCK活性的降低。

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