Pisareva Vera P, Hellen Christopher U T, Pestova Tatyana V
Department of Microbiology and Immunology, State University of New York Downstate Medical Center, 450 Clarkson Avenue, Brooklyn, New York 11203, USA.
Biochemistry. 2007 Mar 13;46(10):2622-9. doi: 10.1021/bi062134g. Epub 2007 Feb 13.
Eukaryotic translation initiation factor eIF5B is a ribosome-dependent GTPase that is responsible for the final step in initiation, which involves the displacement of initiation factors from the 40S ribosomal subunit in initiation complexes and its joining with the 60S subunit. Hydrolysis of eIF5B-bound GTP is not required for its function in subunit joining but is necessary for the subsequent release of eIF5B from assembled 80S ribosomes. Here we investigated the kinetics of guanine nucleotide binding to eIF5B by a fluorescent stopped-flow technique using fluorescent mant derivatives of GTP and GDP and of the GTP analogues GTPgammaS and GMPPNP. The affinity of eIF5B for mant-GTP (Kd approximately 14-18 microM) was approximately 7-fold less than for mant-GDP (Kd approximately 2.3 microM), and both guanine nucleotides dissociated rapidly from eIF5B (k-1mant-GTP approximately 22-28 s-1, k-1mant-GDP approximately 10-14 s-1). These properties of eIF5B suggest a rapid spontaneous GTP/GDP exchange on eIF5B and are therefore consistent with it having no requirement for a special guanine nucleotide exchange factor. The affinity of eIF5B for mant-GTPgammaS was about 2 times lower (Kd approximately 6.9 microM) and for mant-GMPPNP 1.5 times higher (Kd approximately 25.7 microM) than for mant-GTP, indicating that eIF5B tolerates modifications of the triphosphate moiety well.
真核生物翻译起始因子eIF5B是一种核糖体依赖性GTP酶,负责起始过程的最后一步,这涉及到起始复合物中起始因子从40S核糖体亚基上的位移以及其与60S亚基的结合。eIF5B结合的GTP水解对于其在亚基结合中的功能不是必需的,但对于随后eIF5B从组装好的80S核糖体上的释放是必需的。在这里,我们使用GTP、GDP以及GTP类似物GTPγS和GMPPNP的荧光mant衍生物,通过荧光停流技术研究了鸟嘌呤核苷酸与eIF5B结合的动力学。eIF5B对mant-GTP的亲和力(Kd约为14 - 18μM)比对mant-GDP的亲和力(Kd约为2.3μM)低约7倍,并且两种鸟嘌呤核苷酸都能迅速从eIF5B上解离(k-1mant-GTP约为22 - 28 s-1,k-1mant-GDP约为10 - 14 s-1)。eIF5B的这些特性表明其在eIF5B上能快速自发地进行GTP/GDP交换,因此与其不需要特殊的鸟嘌呤核苷酸交换因子是一致的。eIF5B对mant-GTPγS的亲和力(Kd约为6.9μM)比对mant-GTP的亲和力低约2倍,对mant-GMPPNP的亲和力(Kd约为25.7μM)比对mant-GTP的亲和力高1.5倍,这表明eIF5B对三磷酸部分的修饰耐受性良好。