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核苷激酶的异常核苷三磷酸供体:3'-脱氧腺苷-2'-三磷酸和2'-脱氧腺苷-3'-三磷酸。

Unusual nucleoside triphosphate donors for nucleoside kinases: 3'-deoxyadenosine-2'-triphosphate and 2'-deoxyadenosine-3'-triphosphate.

作者信息

Krawiec K, Kierdaszuk B, Kalinichenko E N, Mikhailopulo I A, Shugar D

机构信息

Department of Biophysics, Institute of Experimental Physics, University of Warsaw, Poland.

出版信息

Acta Biochim Pol. 1998;45(1):87-94.

PMID:9701500
Abstract

Two non-conventional analogues of ATP, 3'-deoxyadenosine-2'-triphosphate (3'-d-2'-ATP) and 2'-deoxyadenosine-3'-triphosphate (2'-d-3'-ATP), the syntheses of which are described, were examined as potential phosphate donors for the nucleoside kinases: 2'-deoxycytidine kinase (dCK), cytosolic thymidine kinase (TK1) and mitochondrial thymidine kinase (TK2). The reactions were monitored by means of a mixture of [gamma-32P]ATP and cold analogue, and/or with the use of 3H-labelled acceptors and cold donor. With dCK, using equimolar mixtures of ATP with each analogue, and dC as acceptor, phosphate transfer from 3'-d-2'-ATP and 2'-d-3'-ATP amounted to 34% and 14%, respectively. With each analogue used alone (each at concentration of 100 microM), phosphate transfer from 3'-d-2'-ATP was 55% that from ATP, and from 2'-d-3'-ATP 16%. With human TK2, and equimolar mixtures of [gamma-32P]ATP with each of the analogues, and 1 microM dT as acceptor, there was no detectable transfer from either analogue. But, when each analogue was used alone, phosphate transfer attained 11% and 5%, respectively, that for ATP alone. With the low affinity form of human TK1, and dT as acceptor, only low phosphate transfer occurred with either analogue used alone. Both compounds exhibited Michaelis-Menten kinetics (with significantly lower Vmax than ATP), while ATP exhibited cooperative kinetics with all three kinases.

摘要

本文描述了两种非传统的ATP类似物,即3'-脱氧腺苷-2'-三磷酸(3'-d-2'-ATP)和2'-脱氧腺苷-3'-三磷酸(2'-d-3'-ATP),研究了它们作为核苷激酶潜在磷酸盐供体的可能性:2'-脱氧胞苷激酶(dCK)、胞质胸苷激酶(TK1)和线粒体胸苷激酶(TK2)。通过[γ-32P]ATP与冷类似物的混合物,和/或使用3H标记的受体和冷供体来监测反应。对于dCK,使用ATP与每种类似物的等摩尔混合物,并以dC作为受体,来自3'-d-2'-ATP和2'-d-3'-ATP的磷酸盐转移分别为34%和14%。单独使用每种类似物时(每种浓度为100μM),来自3'-d-2'-ATP的磷酸盐转移是来自ATP的55%,来自2'-d-3'-ATP的是16%。对于人TK2,使用[γ-32P]ATP与每种类似物的等摩尔混合物,并以1μM dT作为受体,未检测到来自任何一种类似物的转移。但是,当单独使用每种类似物时,磷酸盐转移分别达到单独使用ATP时的11%和5%。对于人TK1的低亲和力形式,以dT作为受体,单独使用任何一种类似物时仅发生低磷酸盐转移。两种化合物均表现出米氏动力学(Vmax明显低于ATP),而ATP与所有三种激酶均表现出协同动力学。

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