Tyagi S C, Wu F Y
J Biol Chem. 1987 Aug 5;262(22):10684-8.
New fluorescent derivatives of dinucleoside monophosphates, (5'-AmNS)UpA/ApU/GpU/CpA, with a fluorophore, 1-aminonaphthalene-5-sulfonic acid (AmNS), attached to the first nucleotide of the dinucleoside monophosphates via a 5'-secondary amine linkage were synthesized in good yield. The chemical structure of (5'-AmNS)ApU was proved by the phosphodiesterase digestion followed by Whatman No. 3MM paper chromatographic and spectroscopic analysis of the digested products. The ability of these analogs to be incorporated into the 5' terminus of RNA chain forming fluorescent oligonucleotides by Escherichia coli RNA polymerase was studied in the presence of a synthetic DNA template. The enzymatic reaction of (5'-AmNS)UpA and [3H]UTP in the presence of poly(dA-dT) yielded (5'-AmNS)UpAp[3H]U in greater than 30% yield with the Km values of 5 and 2.5 microM and Vmax values of 17 and 25 nmol/min/mg of enzyme for (5'-AmNS)UpA and UpA, respectively. The structure of this fluorescent trinucleotide was identified by RNase A digestion and paper chromatographic analysis of the digested products. (5'-AmNS)UpA or (5'-AmNS)ApU exhibits two absorption maxima around 270 and 340-350 nm and a fluorescent emission maximum at 445 nm when excited at 340 nm. These spectral characteristics permit their use as energy donors for the transfer of energy to the intrinsic cobalt of the cobalt-substituted RNA polymerases. Upon hydrolysis of the phosphodiester bond of these analogs by venom phosphodiesterase, the absorption at 340 and 270 nm increased by 5 and 20%, respectively, while their fluorescence at 445 nm was enhanced by 25%. Thus, these analogs can be used for studying the dynamics of initiation and elongation reactions catalyzed by DNA-dependent RNA polymerases by absorption and fluorescence spectroscopies.
合成了二核苷单磷酸的新型荧光衍生物(5'-AmNS)UpA/ApU/GpU/CpA,其荧光团1-氨基萘-5-磺酸(AmNS)通过5'-仲胺键连接到二核苷单磷酸的第一个核苷酸上,产率良好。通过磷酸二酯酶消化,随后对消化产物进行Whatman No. 3MM纸色谱和光谱分析,证明了(5'-AmNS)ApU的化学结构。在合成DNA模板存在的情况下,研究了这些类似物被大肠杆菌RNA聚合酶掺入RNA链5'末端形成荧光寡核苷酸 的能力。(5'-AmNS)UpA与[3H]UTP在聚(dA-dT)存在下的酶促反应产生(5'-AmNS)UpAp[3H]U,产率大于30%,(5'-AmNS)UpA和UpA的Km值分别为5和2.5 μM,Vmax值分别为17和25 nmol/min/mg酶。通过RNase A消化和对消化产物的纸色谱分析鉴定了这种荧光三核苷酸的结构。当在340 nm激发时,(5'-AmNS)UpA或(5'-AmNS)ApU在270和340 - 350 nm左右表现出两个吸收最大值,在445 nm处表现出荧光发射最大值。这些光谱特性使其能够用作能量供体,将能量转移到钴取代的RNA聚合酶的固有钴上。当这些类似物的磷酸二酯键被蛇毒磷酸二酯酶水解时,340和270 nm处的吸收分别增加了5%和20%,而它们在445 nm处的荧光增强了25%。因此,这些类似物可用于通过吸收光谱和荧光光谱研究DNA依赖性RNA聚合酶催化的起始和延伸反应的动力学。