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前循环形式下果糖-1,6-二磷酸酶的调控

Regulation of Fructose 1,6-Bisphosphatase in Procyclic Form .

作者信息

Wilkinson Christina, Morris Meredith T

机构信息

Eukaryotic Pathogens Innovation Center, Department of Genetics and Biochemistry, Clemson University, Life Sciences Facility, 190 Collings Ave., Clemson, SC 29634, USA.

出版信息

Pathogens. 2021 May 18;10(5):617. doi: 10.3390/pathogens10050617.

Abstract

Glycolysis is well described in , while the importance of gluconeogenesis and one of the key enzymes in that pathway, fructose 1,6-bisphosphatase, is less understood. Using a sensitive and specific assay for FBPase, we demonstrate that FBPase activity in insect stage, procyclic form (PF), parasite changes with parasite cell line, extracellular glucose levels, and cell density. FBPase activity in log phase PF 2913 cells was highest in high glucose conditions, where gluconeogenesis is expected to be inactive, and was undetectable in low glucose, where gluconeogenesis is predicted to be active. This unexpected relationship between FBPase activity and extracellular glucose levels suggests that FBPase may not be exclusively involved in gluconeogenesis and may play an additional role in parasite metabolism. In stationary phase cells, the relationship between FBPase activity and extracellular glucose levels was reversed. Furthermore, we found that monomorphic PF 2913 cells had significantly higher FBPase levels than pleomorphic PF AnTat1.1 cells where the activity was undetectable except when cells were grown in standard SDM79 media, which is glucose-rich and commonly used to grow PF trypanosomes in vitro. Finally, we observed several conditions where FBPase activity changed while protein levels did not, suggesting that the enzyme may be regulated via post-translational modifications.

摘要

糖酵解在[具体文献未提及处]已有详尽描述,而糖异生作用及其途径中的关键酶之一,即果糖1,6 - 二磷酸酶的重要性却鲜为人知。通过对果糖1,6 - 二磷酸酶(FBPase)采用灵敏且特异的检测方法,我们证明了在昆虫阶段的原循环型(PF)寄生虫中,FBPase活性会随寄生虫细胞系、细胞外葡萄糖水平以及细胞密度而变化。处于对数期的PF 2913细胞中的FBPase活性在高葡萄糖条件下最高,而在此条件下糖异生作用预计处于无活性状态;在低葡萄糖条件下则检测不到FBPase活性,而在此条件下糖异生作用预计是活跃的。FBPase活性与细胞外葡萄糖水平之间这种出人意料的关系表明,FBPase可能并非仅参与糖异生作用,还可能在寄生虫代谢中发挥额外作用。在静止期细胞中,FBPase活性与细胞外葡萄糖水平之间的关系发生了逆转。此外,我们发现单形性的PF 2913细胞中的FBPase水平显著高于多形性的PF AnTat1.1细胞,在后者中,除非细胞在富含葡萄糖且常用于体外培养PF锥虫的标准SDM79培养基中生长,否则检测不到FBPase活性。最后,我们观察到在几种情况下,FBPase活性发生了变化而蛋白质水平未变,这表明该酶可能通过翻译后修饰进行调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4233/8157246/bb09c66323a3/pathogens-10-00617-g001.jpg

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