Crechet J B, Parmeggiani A
Eur J Biochem. 1986 Dec 15;161(3):655-60. doi: 10.1111/j.1432-1033.1986.tb10490.x.
The GTPase activity of purified EF-1 alpha from calf brain has been studied under various experimental conditions and compared with that of EF-Tu. EF-1 alpha displays a much higher GTPase turnover than EF-Tu in the absence of aminoacyl-tRNA (aa-tRNA) and ribosomes (intrinsic GTPase activity); this is due to the higher exchange rate between bound GDP and free GTP. Also the intrinsic GTPase of EF-1 alpha is enhanced by increasing the concentration of monovalent cations, K+ being more effective than NH+4. Differently from EF-Tu, aa-tRNA is much more active than ribosomes in stimulating the EF-1 alpha GTPase activity. However, ribosomes strongly reinforce the aa-tRNA effect. In the absence of aa-tRNA the rate-limiting step of the GTPase turnover appears to be the hydrolysis of GTP, whereas in its presence the GDP/GTP exchange reaction becomes rate-limiting, since addition of EF-1 beta enhances turnover GTPase activity. Kirromycin moderately inhibits the intrinsic GTPase of EF-1 alpha; this effect turns into stimulation when aa-tRNA is present. Addition of ribosomes abolishes any kirromycin effect. The inability of kirromycin to affect the EF-1 alpha/guanine-nucleotide interaction in the presence of ribosomes shows that, differently from EF-Tu, the EF-1 alpha X GDP/GTP exchange reaction takes place on the ribosome.
在各种实验条件下,对从小牛脑中纯化的EF-1α的GTP酶活性进行了研究,并与EF-Tu的GTP酶活性进行了比较。在没有氨酰-tRNA(aa-tRNA)和核糖体的情况下(内在GTP酶活性),EF-1α的GTP酶周转比EF-Tu高得多;这是由于结合的GDP和游离GTP之间的交换率更高。此外,通过增加单价阳离子的浓度可增强EF-1α的内在GTP酶活性,K+比NH4+更有效。与EF-Tu不同,aa-tRNA在刺激EF-1α的GTP酶活性方面比核糖体更具活性。然而,核糖体强烈增强了aa-tRNA的作用。在没有aa-tRNA的情况下,GTP酶周转的限速步骤似乎是GTP的水解,而在其存在的情况下,GDP/GTP交换反应成为限速步骤,因为添加EF-1β可增强周转GTP酶活性。奇霉素适度抑制EF-1α的内在GTP酶;当存在aa-tRNA时,这种作用转变为刺激作用。添加核糖体可消除奇霉素的任何作用。在存在核糖体的情况下,奇霉素无法影响EF-1α/鸟嘌呤核苷酸相互作用,这表明与EF-Tu不同,EF-1α的GDP/GTP交换反应发生在核糖体上。