Kovalchuke O, Kambampati R, Pladies E, Chakraburtty K
Department of Biochemistry, Medical College of Wisconsin, Milwaukee 53226, USA.
Eur J Biochem. 1998 Dec 15;258(3):986-93. doi: 10.1046/j.1432-1327.1998.2580986.x.
Elongation factor 3 (EF-3) is an essential requirement for translation in fungi. We previously reported activation of EF-3-ATPase by yeast ribosomes. EF-3 interacts with both ribosomal subunits and shows high affinity for 60S subparticles. Translational inhibitors alpha-sarcin, ricin and auto-immune antibodies to GTPase-activation center inhibit binding of EF-2 but not of EF-3 to yeast ribosomes. EF-2 competes with EF-3 for the ribosomal binding sites and inhibits EF-3-ATPase activity. Neomycin relieves the inhibitory effect of EF-2 on EF-3 function. The apparent competition between EF-2 and EF-3 may represent binding of these two proteins to specific conformational states of the ribosome. EF-3 stimulates ternary complex binding to yeast ribosomes. Neither the binding of EF-3 to ribosomes, nor the ribosome-dependent EF-3-ATPase activity are influenced by EF-1 alpha. Three lines of experimental evidence suggest a direct interaction between EF-1 alpha and EF-3. A polyclonal antibody to EF-3 immunoprecipitates EF-1 alpha along with EF-3. EF-1 alpha co-migrates with GST-EF-3 on glutathione-Sepharose columns. ELISA tests demonstrate an interference of EF-3/anti-EF-3 interaction by EF-1 alpha but not by EF-2. These results strongly suggest that the stimulatory effect of EF-3 on the ternary complex binding to yeast ribosomes involves a direct interaction between EF-1 alpha and EF-3.
延伸因子3(EF-3)是真菌翻译过程中的必需成分。我们之前报道过酵母核糖体可激活EF-3-ATP酶。EF-3与核糖体的两个亚基都相互作用,并且对60S亚颗粒具有高亲和力。翻译抑制剂α-链霉溶菌素、蓖麻毒素以及针对GTP酶激活中心的自身免疫抗体可抑制EF-2与酵母核糖体的结合,但不影响EF-3与酵母核糖体的结合。EF-2与EF-3竞争核糖体结合位点,并抑制EF-3-ATP酶活性。新霉素可缓解EF-2对EF-3功能的抑制作用。EF-2与EF-3之间明显的竞争可能代表这两种蛋白质与核糖体特定构象状态的结合。EF-3可刺激三元复合物与酵母核糖体的结合。EF-1α既不影响EF-3与核糖体的结合,也不影响核糖体依赖的EF-3-ATP酶活性。三条实验证据表明EF-1α与EF-3之间存在直接相互作用。一种针对EF-3的多克隆抗体在免疫沉淀EF-3时也会共沉淀EF-1α。在谷胱甘肽-琼脂糖柱上,EF-1α与GST-EF-3共同迁移。酶联免疫吸附测定试验表明,EF-1α可干扰EF-3/抗EF-3的相互作用,而EF-2则无此作用。这些结果有力地表明,EF-3对三元复合物与酵母核糖体结合的刺激作用涉及EF-1α与EF-3之间的直接相互作用。