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核苷激酶突变缺失对培养的CEM和V79细胞中脱氧腺苷5'-磷酸/脱氧腺苷底物循环的影响。

Effects of mutational loss of nucleoside kinases on deoxyadenosine 5'-phosphate/deoxyadenosine substrate cycle in cultured CEM and V79 cells.

作者信息

Bianchi V, Ferraro P, Borella S, Bonvini P, Reichard P

机构信息

Department of Biology, University of Padova, Italy.

出版信息

J Biol Chem. 1994 Jun 17;269(24):16677-83.

PMID:8206987
Abstract

The functions of a deoxynucleoside kinase and a deoxynucleotidase can give rise to substrate cycles in which the two enzymes catalyze in opposite directions the irreversible interconversion of a deoxynucleoside 5'-monophosphate (dNMP) and its deoxynucleoside. Earlier evidence showed that pyrimidine dNMP cycles occur in cultured cells and participate in the regulation of the size of dNMP pools there by affecting the transport of deoxyribonucleosides across the cell membrane. Here, we apply an isotope flow method using labeled adenine as precursor of dAMP and DNA to quantify deoxyadenosine excretion as a measure of the catabolic activity of a putative dAMP/deoxyadenosine cycle. A comparison of human CEM lymphoblasts and hamster V79 fibroblasts, including mutant cells lacking kinases for the phosphorylation of deoxyadenosine, shows a much lower deoxyadenosine excretion in CEM cells (0.05% of dATP synthesized by reduction of ADP) as compared with V79 cells (4% of dATP). Mutational loss of deoxycytidine kinase increases these values to 0.3% in CEM cells and to 10% in V79 cells. This strongly suggests the presence of a dAMP/deoxyadenosine cycle in both CEM and V79 cells. Additional loss of adenosine kinase only marginally affects deoxyadenosine excretion in CEM cells. The small excretion of deoxyadenosine (also in the absence of both kinases) demonstrates that in CEM cells the in situ activity of the deoxynucleotidase affecting the dAMP/deoxyadenosine substrate cycle is very low and that the cycle has mainly an anabolic function there.

摘要

脱氧核苷激酶和脱氧核苷酸酶的功能可导致底物循环,其中这两种酶以相反方向催化脱氧核苷5'-单磷酸(dNMP)与其脱氧核苷之间的不可逆相互转化。早期证据表明,嘧啶dNMP循环存在于培养细胞中,并通过影响脱氧核糖核苷跨细胞膜的转运参与调节那里dNMP库的大小。在此,我们应用一种同位素流动方法,使用标记的腺嘌呤作为dAMP和DNA的前体,来定量脱氧腺苷排泄,以此作为推定的dAMP/脱氧腺苷循环分解代谢活性的一种度量。对人CEM淋巴母细胞和仓鼠V79成纤维细胞(包括缺乏脱氧腺苷磷酸化激酶的突变细胞)的比较显示,与V79细胞(占通过ADP还原合成的dATP的4%)相比,CEM细胞中的脱氧腺苷排泄要低得多(占通过ADP还原合成的dATP的0.05%)。脱氧胞苷激酶的突变缺失使CEM细胞中的这些值增加到0.3%,在V79细胞中增加到10%。这有力地表明CEM和V79细胞中均存在dAMP/脱氧腺苷循环。腺苷激酶的额外缺失仅对CEM细胞中的脱氧腺苷排泄产生轻微影响。脱氧腺苷的少量排泄(即使在两种激酶均缺失的情况下也是如此)表明,在CEM细胞中,影响dAMP/脱氧腺苷底物循环的脱氧核苷酸酶的原位活性非常低,并且该循环在那里主要具有合成代谢功能。

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