Ramamoorthy B, Lees R C, Kleid D G, Khorana H G
J Biol Chem. 1976 Feb 10;251(3):676-94.
In continuing the work on the total synthesis of the gene for an Escherichia coli tyrosine suppressor tRNA (accompanying papers) and as a part of a study of the mechanism of transcription of this gene, a 23-nucleotide unit-long DNA corresponding to the previously determined (Loewen, P., Sekiya, T., and Khorana, H. G. (1974) J. Biol. Chem. 249, 217) sequence has been synthesized. The synthesis was carried out by dividing the total duplex into the following five deoxyribooligonucleotide segments, all of which were chemically synthesized: (a) the undecanucleotide, d(A-G-T-G-A-T-G-G-T-G-G); (b)the undecanucleotide, d(T-C-A-C-T-T-T-C-A-A-A); (c) the undecanucleotide, d(G-G-A-C-T-T-T-T-G-A-A); (d) the dodecanucleotide, d(A-G-T-C-C-C-T-G-A-A-C-T); and (e) the heptanucleotide, d(A-G-T-T-C-A-G). All the five synthetic oligonucleotides were characterized by chromatographic and radioactive fingerprinting methods after labeling the 5'-ends with a 32P-phosphate group. Synthesis of the double-stranded DNA duplex was completed by joining 5'-phosphorylated segments 1, 3, and 4 in the presence of segments 2 and 5 using T4-polynucleotide ligase. The DNA duplex was characterized.
在继续进行大肠杆菌酪氨酸抑制tRNA基因全合成工作(相关论文)以及作为该基因转录机制研究的一部分时,已合成了一段对应于先前确定序列(Loewen, P., Sekiya, T., and Khorana, H. G. (1974) J. Biol. Chem. 249, 217)的23个核苷酸长的DNA。合成过程是将整个双链体分成以下五个化学合成的脱氧核糖寡核苷酸片段:(a)十一核苷酸,d(A-G-T-G-A-T-G-G-T-G-G);(b)十一核苷酸,d(T-C-A-C-T-T-T-C-A-A-A);(c)十一核苷酸,d(G-G-A-C-T-T-T-T-G-A-A);(d)十二核苷酸,d(A-G-T-C-C-C-T-G-A-A-C-T);以及(e)七核苷酸,d(A-G-T-T-C-A-G)。在用32P-磷酸基团标记5'-末端后,通过色谱和放射性指纹法对所有五个合成寡核苷酸进行了表征。使用T4-多核苷酸连接酶在片段2和5存在的情况下将5'-磷酸化的片段1、3和4连接起来,完成了双链DNA双链体的合成。对该DNA双链体进行了表征。