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人胎盘腺苷激酶对脱氧腺苷和核苷类似物磷酸化的调节。

Regulation of deoxyadenosine and nucleoside analog phosphorylation by human placental adenosine kinase.

作者信息

Hurley M C, Lin B, Fox I H

出版信息

J Biol Chem. 1985 Dec 15;260(29):15675-81.

PMID:2999129
Abstract

The enzymes responsible for the phosphorylation of deoxyadenosine and nucleoside analogs are important in the pathogenesis of adenosine deaminase deficiency and in the activation of specific anticancer and antiviral drugs. We examined the role of adenosine kinase in catalyzing these reactions using an enzyme purified 4000-fold (2.1 mumol/min/mg) from human placenta. The Km values of deoxyadenosine and ATP are 135 and 4 microM, respectively. Potassium and magnesium are absolute requirements for deoxyadenosine phosphorylation, and 150 mM potassium and 5 mM MgCl2 are critical for linear kinetics. With only 0.4 mM MgCl2 in excess of ATP levels, the Km for deoxyadenosine is increased 10-fold. ADP is a competitive inhibitor with a Ki of 13 microM with variable MgATP2-, while it is a mixed inhibitor with a Ki and Ki' of 600 and 92 microM, respectively, when deoxyadenosine is variable. AMP is a mixed inhibitor with Ki and Ki' of 177 and 15 microM, respectively, with variable deoxyadenosine; it is a non-competitive inhibitor with a Ki of 17 microM and Ki' of 27 microM with variable ATP. Adenosine kinase phosphorylates adenine arabinoside with an apparent Km of 1 mM using deoxyadenosine kinase assay conditions. The Km values for 6-methylmercaptopurine riboside and 5-iodotubercidin, substrates for adenosine kinase, are estimated to be 4.5 microM and 2.6 nM, respectively. Other nucleoside analogs are potent inhibitors of deoxyadenosine phosphorylation, but their status as substrates remains unknown. These data indicate that deoxyadenosine phosphorylation by adenosine kinase is primarily regulated by its Km and the concentrations of Mg2+, ADP, and AMP. The high Km values for phosphorylation of deoxyadenosine and adenine arabinoside suggest that adenosine kinase may be less likely to phosphorylate these nucleosides in vivo than other enzymes with lower Km values. Adenosine kinase appears to be important for adenosine analog phosphorylation where the Michaelis constant is in the low micromolar range.

摘要

负责脱氧腺苷和核苷类似物磷酸化的酶在腺苷脱氨酶缺乏症的发病机制以及特定抗癌和抗病毒药物的激活过程中起着重要作用。我们使用从人胎盘中纯化了4000倍(2.1微摩尔/分钟/毫克)的一种酶,研究了腺苷激酶在催化这些反应中的作用。脱氧腺苷和ATP的米氏常数分别为135微摩尔和4微摩尔。钾和镁是脱氧腺苷磷酸化的绝对必需物质,150毫摩尔/升的钾和5毫摩尔/升的氯化镁对于线性动力学至关重要。当氯化镁仅比ATP水平过量0.4毫摩尔时,脱氧腺苷的米氏常数增加10倍。ADP是一种竞争性抑制剂,对于可变的MgATP2-,其抑制常数(Ki)为13微摩尔;而当脱氧腺苷可变时,它是一种混合型抑制剂,其Ki和Ki'分别为600和92微摩尔。AMP是一种混合型抑制剂,对于可变的脱氧腺苷,其Ki和Ki'分别为177和15微摩尔;对于可变的ATP,它是一种非竞争性抑制剂,其Ki为17微摩尔,Ki'为27微摩尔。在使用脱氧腺苷激酶检测条件下,腺苷激酶使阿糖腺苷磷酸化,其表观米氏常数为1毫摩尔。腺苷激酶的底物6-甲基巯基嘌呤核苷和5-碘结核菌素的米氏常数估计分别为4.5微摩尔和2.6纳摩尔。其他核苷类似物是脱氧腺苷磷酸化的有效抑制剂,但它们作为底物的状态仍不清楚。这些数据表明,腺苷激酶对脱氧腺苷的磷酸化主要受其米氏常数以及镁离子、ADP和AMP浓度的调节。脱氧腺苷和阿糖腺苷磷酸化的高米氏常数表明,与其他米氏常数较低的酶相比,腺苷激酶在体内磷酸化这些核苷的可能性可能较小。对于米氏常数处于低微摩尔范围的腺苷类似物磷酸化,腺苷激酶似乎很重要。

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