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首页> 外文期刊>Bioconjugate Chemistry >Charge Dependent Substrate Activity of C3' and N3 Functionalized, Organometallic Technetium and Rhenium-Labeled Thymidine Derivatives toward Human Thymidine Kinase 1
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Charge Dependent Substrate Activity of C3' and N3 Functionalized, Organometallic Technetium and Rhenium-Labeled Thymidine Derivatives toward Human Thymidine Kinase 1

机译:C3'和N3功能化的有机金属Tech和R标记的胸腺嘧啶衍生物对人胸苷激酶1的电荷依赖性底物活性。

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Human cytosolic thymidine kinase (hTKl) has proven to be a suitable target for the noninvasive imaging of cancer cell proliferation using radiolabeled thymidine analogues such as [~(18)F]3'-fluoro-3'-deoxythymidine ([~(18)F]FLT). A thymidine analogue for single photon emission computed tomography (SPECT), which incorporates the readily available and inexpensive nuclide technetium-99m, would be of considerable practical interest. hTKl is known to accommodate modification of the structure of the natural substrate thymidine at the positions N3 and C3' and, to a lesser extent, C5. In this work, we used the copper-catalyzed azide—alkyne cycloaddition to synthesize two series of derivatives in which thymidine is functionalized at either the C3' or N3 position with chelating systems suitable for the M(CO)3 core (M = ~(99m)Tc, Re). The click chemistry approach enabled complexes with different structures and overall charges to be synthesized from a common precursor. Using this strategy, the first organometallic hTKl substrates in which thymidine is modified at the C3' position were identified. Phosphorylation of the organometallic derivatives was measured relative to thymidine. We have shown that the influence of the overall charge of the derivatives is dependent on the position of functionalization. In the case of the C3'-functionalized derivatives, neutral and anionic substrates were most readily phosphorylated (20—28% of the value for the parent ligand thymidine), whereas for the N3-functionalized derivatives, cationic and neutral complexes were apparently better substrates for the enzyme (14-18%) than anionic derivatives (9%).
机译:已证明人胞浆胸苷激酶(hTK1)是适合的靶标,可使用放射性标记的胸苷类似物,例如[〜(18)F] 3'-氟-3'-脱氧胸苷([〜(18) F] FLT)。用于单光子发射计算机断层扫描(SPECT)的胸腺嘧啶类似物,结合了现成的廉价核素inexpensive 99m,将具有相当大的实际意义。已知hTK1在位置N3和C3'处以及在较小程度上在C5处适应天然底物胸苷的结构修饰。在这项工作中,我们使用了铜催化的叠氮化物-炔烃环加成反应,合成了两个衍生物系列,其中胸苷在C3'或N3位置被适合于M(CO)3核的螯合系统官能化(M =〜( 99m)Tc,Re)。点击化学方法使具有不同结构和总电荷的配合物可以从共同的前体中合成。使用该策略,鉴定了其中胸苷在C3'位置被修饰的第一有机金属hTK1底物。相对于胸苷测量有机金属衍生物的磷酸化。我们已经表明,衍生物的总电荷的影响取决于官能化的位置。对于C3'官能化的衍生物,中性和阴离子底物最容易被磷酸化(为母体配体胸腺嘧啶核苷值的20-28%),而对于N3官能化的衍生物,阳离子和中性络合物显然是更好的底物酶(14-18%)比阴离子衍生物(9%)高。

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