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牛甲状腺微粒体中多萜醇激酶的特性研究

Characterization of dolichol kinase from bovine thyroid microsomes.

作者信息

Steen L, Van Dessel G, De Wolf M, Lagrou A, Hilderson H, Dierick W

出版信息

Int J Biochem. 1987;19(5):419-26. doi: 10.1016/0020-711x(87)90062-0.

Abstract

Bovine thyroid microsomes are able to phosphorylate exogenous [1-3H]dolichol as well as endogenous dolichol. The properties and specificity of the dolichol kinase activity have been studied by following the phosphorylation of [1-3H]dolichol to [1-3H]DMP as well as the formation of [32P]DMP from endogenous dolichol and [gamma-32P]CTP. The dolichol kinase activity was not linear with respect to time and exhibited a neutral pH-optimum. Product formation was directly proportional to microsomal protein concentration up to 2.5 mg protein/incubation. The enzyme was found to depend on divalent cations for activity: Mg2+-ions being much more effective than Ca2+- and Mn2+-ions. In accordance, EDTA was strongly inhibitory. The enzyme exhibited specificity for CTP as phosphoryl donor and was found to be inhibited by the reaction product CDP. The apparent Km-value for exogenous dolichol amounted to 4 microM. Those for CTP were estimated to be 3.88 and 10.75 mM with exogenous [1-3H]dolichol depending on the source of CTP. With endogenous dolichol Km-values for CTP of 27.8 and 6.1 microM were calculated in respectively the absence and presence of 5 mM VO4(3-). Triton X-100 (0.15%) was necessary in the [1-3H]dolichol kinase assay (only 3% of enzymatic activity in the absence of detergent), while with [gamma-32P]CTP dolichol kinase detergent was only of minor influence (30% stimulation at 0.02% Triton X-100). The levels of the enzymatic activity could be doubled by the inclusion of 18-21 mM NaF [( 1-3H]dolichol kinase) as phosphatase inhibitor: VO4(3-) had practically no effect. In contrast with [gamma-32P]CTP dolichol kinase, the enzymatic activity could be enhanced 4-fold by addition of 5 mM VO4(3-) while F- resulted into no appreciable effect.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

牛甲状腺微粒体能够使外源性[1-³H]多萜醇以及内源性多萜醇磷酸化。通过追踪[1-³H]多萜醇磷酸化为[1-³H]二甲基丙烯焦磷酸(DMP)以及内源性多萜醇与[γ-³²P]CTP形成[³²P]DMP,对多萜醇激酶活性的性质和特异性进行了研究。多萜醇激酶活性与时间不成线性关系,且表现出中性pH最适值。在蛋白浓度高达2.5mg蛋白/孵育量时,产物形成与微粒体蛋白浓度成正比。发现该酶的活性依赖于二价阳离子:Mg²⁺离子比Ca²⁺和Mn²⁺离子更有效。相应地,EDTA具有强烈的抑制作用。该酶对CTP作为磷酰供体具有特异性,并且发现被反应产物CDP抑制。外源性多萜醇的表观Km值为4μM。根据CTP的来源,外源性[1-³H]多萜醇的CTP的表观Km值估计为3.88和10.75mM。在内源性多萜醇中,分别在不存在和存在5mM VO₄³⁻的情况下,计算出CTP的Km值为27.8和6.1μM。在[1-³H]多萜醇激酶测定中,Triton X-100(0.15%)是必需的(在无去污剂时仅为酶活性的3%),而对于[γ-³²P]CTP多萜醇激酶,去污剂的影响较小(在0.02% Triton X-100时刺激30%)。通过加入18 - 21mM NaF([1-³H]多萜醇激酶)作为磷酸酶抑制剂,酶活性水平可加倍:VO₄³⁻几乎没有影响。与[γ-³²P]CTP多萜醇激酶相反,加入5mM VO₄³⁻可使酶活性提高4倍,而F⁻没有明显影响。(摘要截断于250字)

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