Pinuev I O, Tsyrenov V Zh, Bezborodov A M
Prikl Biokhim Mikrobiol. 1979 Jan-Feb;15(1):24-30.
The mechanism of ATP biosynthesis from adenine was studied on the cell-free extract of Corynebacterium species that produces ATP from exogenous adenine, using labeled substrates. As a source of the ribosyl component of the ATP molecule, phosphoribosyl pyrophosphate (PRPP) and ribose-5-phosphate (P5P) were tested. The experiments with PRPP showed adenine phosphoribosyl transferase (EC 2.4.2.7) activity in the extract responsible for the AMP formation from PRPP and adenine. The minimal reaction mixture based on R5P was found to include only magnesium ions, in addition to R5P, adenine, and the extract. This mixture provided the synthesis of not only C14-AMP but also C14-ADP and C14-ATP from C14-adenine. Phosphorylation of C14-AMP to yield C14-ATP was related to the presence of R5P in the mixture. The synthesis of C14-ATP from C14-adenine also took place when R5W was substituted for glucose in the minima mixture.
利用标记底物,对能从外源腺嘌呤产生ATP的棒状杆菌属无细胞提取物中腺嘌呤生物合成ATP的机制进行了研究。作为ATP分子核糖基成分的来源,测试了磷酸核糖焦磷酸(PRPP)和5-磷酸核糖(P5P)。用PRPP进行的实验表明,提取物中存在腺嘌呤磷酸核糖转移酶(EC 2.4.2.7)活性,负责由PRPP和腺嘌呤形成AMP。发现基于R5P的最小反应混合物除了含有R5P、腺嘌呤和提取物外,仅包含镁离子。该混合物不仅能从14C-腺嘌呤合成14C-AMP,还能合成14C-ADP和14C-ATP。14C-AMP磷酸化生成14C-ATP与混合物中R5P的存在有关。当在最小混合物中用R5W替代葡萄糖时,也能从14C-腺嘌呤合成14C-ATP。