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核苷酸变构调节捻转血矛线虫和食道口线虫谷氨酸脱氢酶。

Nucleotide allosteric regulation of the glutamate dehydrogenases of Teladorsagia circumcincta and Haemonchus contortus.

机构信息

Institute of Veterinary, Animal and Biomedical Sciences, Massey University, Private Bag 11-222, Palmerston North, New Zealand.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2012 Mar;161(3):255-60. doi: 10.1016/j.cbpb.2011.11.014. Epub 2011 Dec 6.

Abstract

The expression of glutamate dehydrogenase (GDH; EC 1.4.1.3) in L3 of the nematode Haemonchus contortus was confirmed by detecting GDH mRNA, contrary to earlier reports. The enzyme was active in both L3 and adult H. contortus homogenates either with NAD(+)/H or NADP(+)/H as co-factor. Although it was a dual co-factor GDH, activity was greater with NAD(+)/H than with NADP(+)/H. The rate of the aminating reaction (glutamate formation) was approximately three times higher than for the deaminating reaction (glutamate utilisation). GDH provides a pathway for ammonia assimilation, although the affinity for ammonia was low. Allosteric regulation by GTP, ATP and ADP of L3 and adult H. contortus and Teladorsagia circumcincta (Nematoda) GDH depended on the concentration of the regulators and the direction of the reaction. The effects of each nucleotide were qualitatively similar on the mammalian and parasite GDH, although the nematode enzymes were more responsive to activation by ADP and ATP and less inhibited by GTP under optimum assay condition. GTP inhibited deamination and low concentrations of ADP and ATP stimulated weakly. In the reverse direction, GTP was strongly inhibitory and ADP and ATP activated the enzyme.

摘要

先前的报道表明,旋毛虫 L3 期谷氨酸脱氢酶 (GDH; EC 1.4.1.3) 的表达可通过检测 GDH mRNA 来证实。该酶在 L3 期和成虫旋毛虫匀浆中均具有活性,无论 NAD(+)/H 还是 NADP(+)/H 作为辅助因子。尽管它是一种双辅助因子 GDH,但与 NADP(+)/H 相比,其活性与 NAD(+)/H 更高。氨基化反应(谷氨酸形成)的速率大约是脱氨反应(谷氨酸利用)的三倍。GDH 为氨同化提供了途径,尽管对氨的亲和力较低。L3 期和成虫旋毛虫和泰氏阔盘吸虫 (Nematoda) GDH 的 GTP、ATP 和 ADP 的变构调节取决于调节剂的浓度和反应的方向。每个核苷酸对哺乳动物和寄生虫 GDH 的影响在性质上相似,尽管在最佳测定条件下,线虫酶对 ADP 和 ATP 的激活反应更敏感,对 GTP 的抑制作用较小。GTP 抑制脱氨作用,低浓度的 ADP 和 ATP 微弱刺激。在相反的方向上,GTP 强烈抑制,ADP 和 ATP 激活酶。

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