Sy J, Ogawa Y, Lipmann F
Proc Natl Acad Sci U S A. 1973 Jul;70(7):2145-8. doi: 10.1073/pnas.70.7.2145.
A factor in the ribosomal wash of stringent strains of E. coli was identified by Haseltine et al. as a complement to the ribosomal system for the synthesis of the magic spot compounds of Cashel and Gallant. This factor has been found, in the absence of ribosomes, to catalyze the enzymatic pyrophosphoryl transfer from ATP to GTP or GTP in the formation of magic spot I and magic spot II, the guanosine tetra- and pentaphosphates (ppGpp and pppGpp), respectively. The enzyme, which normally requires the presence of the ribosome-tRNA-mRNA complex for activity, catalyzes a very slow synthesis that is stimulated tenfold by 20% methanol. The temperature optimum of the methanol-stimulated system is 25-30 degrees and activity is drastically depressed at 37 degrees , presumably by inactivation. Catalysis is linear with enzyme concentration and with time for the first 3 hr; during this period 25% of the added GTP is converted. The nonribosomal system is distinguished from the ribosomal system by having a lower Mg(++) and a higher NH(4) (+) optimum. The two systems differ in their response to antibiotics: thiostrepton strongly inhibits the ribosomal system but has no effect on the nonribosomal system.
哈塞尔廷等人在大肠杆菌严谨型菌株的核糖体洗脱液中鉴定出一种因子,它是卡舍尔和加兰特的魔斑化合物合成核糖体系统的一种补充物。已发现,在没有核糖体的情况下,该因子可催化在分别形成魔斑I和魔斑II(即鸟苷四磷酸和五磷酸,ppGpp和pppGpp)过程中,从ATP到GTP或GTP的酶促焦磷酸转移。该酶通常需要核糖体 - tRNA - mRNA复合物存在才能发挥活性,催化的合成过程非常缓慢,20%的甲醇可将其刺激10倍。甲醇刺激系统的最适温度为25 - 30摄氏度,在37摄氏度时活性急剧下降,可能是因为失活。在前3小时内,催化作用与酶浓度和时间呈线性关系;在此期间,25%添加的GTP被转化。非核糖体系统与核糖体系统的区别在于其最适Mg(++)浓度较低,最适NH(4) (+)浓度较高。这两个系统对抗生素的反应不同:硫链丝菌素强烈抑制核糖体系统,但对非核糖体系统没有影响。