Dholakia J N, Wahba A J
Department of Biochemistry, University of Mississippi Medical Center, Jackson 39216-4505.
J Biol Chem. 1989 Jan 5;264(1):546-50.
Polypeptide chain initiation in mammalian systems is regulated at the level of the guanine nucleotide exchange factor (GEF). This multisubunit protein catalyzes the exchange of GDP bound to eukaryotic initiation factor 2 (eIF-2) for GTP. Although various models have been proposed for its mode of action, the exact sequence of events involved in nucleotide exchange is still uncertain. We have studied this reaction by three different experimental techniques: (a) membrane filtration assays to measure the release of [3H]GDP from the eIF-2.[3H]GDP binary complex, (b) changes in the steady-state polarization of fluorescamine-GDP during the nucleotide exchange reaction, and (c) sucrose gradient analysis of the total reaction. The results obtained do not support the reaction as written: eIF-2.GDP + GEF in equilibrium eIF-2.GEF + GDP. The addition of GEF alone does not result in the displacement of eIF-2-bound GDP. The release of bound GDP is dependent on the presence of both GTP and GEF, and this argues against the possibility of a substituted enzyme (ping-pong) mechanism for the guanine nucleotide exchange reaction. An important finding of the present study is the observation that GTP binds to GEF. The Kd value of 4 microM for GTP was estimated (a) by the extent of quenching of tryptophan fluorescence of GEF in the presence of GTP and (b) by the binding of [3H]GTP to GEF as measured on nitrocellulose membranes. The GEF-dependent release of eIF-2-bound GDP was studied at several constant concentrations of one substrate (GTP or eIF-2.GDP) while varying the second substrate concentration, and the results were then plotted according to the Lineweaver-Burk method. Taken together, the results of GTP and eIF-2.GDP binding to GEF and the pattern of the double-reciprocal plots strongly suggest that the guanine nucleotide exchange reaction follows a sequential mechanism.
哺乳动物系统中的多肽链起始在鸟嘌呤核苷酸交换因子(GEF)水平受到调控。这种多亚基蛋白催化与真核起始因子2(eIF - 2)结合的GDP与GTP的交换。尽管已经提出了各种关于其作用模式的模型,但核苷酸交换所涉及的确切事件顺序仍不确定。我们通过三种不同的实验技术研究了该反应:(a)膜过滤测定法,用于测量从eIF - 2·[³H]GDP二元复合物中释放[³H]GDP;(b)核苷酸交换反应过程中荧光胺 - GDP稳态极化的变化;(c)总反应的蔗糖梯度分析。所获得的结果不支持所写的反应:eIF - 2·GDP + GEF⇌eIF - 2·GEF + GDP。单独添加GEF不会导致eIF - 2结合的GDP被取代。结合的GDP的释放取决于GTP和GEF的同时存在,这与鸟嘌呤核苷酸交换反应的取代酶(乒乓)机制的可能性相悖。本研究的一个重要发现是观察到GTP与GEF结合。通过以下方法估计GTP的Kd值为4μM:(a)在存在GTP的情况下,通过GEF色氨酸荧光的淬灭程度;(b)通过在硝酸纤维素膜上测量[³H]GTP与GEF的结合。在一种底物(GTP或eIF - 2·GDP)的几个恒定浓度下,同时改变第二种底物浓度,研究了GEF依赖的eIF - 2结合的GDP的释放,然后根据Lineweaver - Burk方法绘制结果。综合起来,GTP和eIF - 2·GDP与GEF结合的结果以及双倒数图的模式强烈表明鸟嘌呤核苷酸交换反应遵循顺序机制。