Tsu C A, Uhlenbeck O C
Department of Chemistry and Biochemistry, Campus Box 215, University of Colorado, Boulder, Colorado 80309-0215, USA.
Biochemistry. 1998 Dec 1;37(48):16989-96. doi: 10.1021/bi981837y.
The adenosinetriphosphatase (ATPase) activity of the Escherichia coli DEAD protein DbpA is unusual in that it is specifically stimulated by 23S ribosomal RNA (rRNA). A coupled spectroscopic ATPase assay was used to investigate the interaction of DbpA with RNA and ATP. A 153-base fragment of domain V of 23S rRNA is kinetically identical to intact, native rRNA in activating DbpA: kcat = 600 min-1, Kapp(RNA) = 10 nM, and Km(ATP) = 120 microM. The ATPase turnover in the absence of RNA is 0.25 min-1. Fragments of 23S rRNA lacking this site (nucleotides 2454-2606) are essentially inactive, as are other RNAs such as poly(A) and tRNA. The relative RNA specificity of DbpA ranges from 10(3) to 10(6) [kmax/Kapp(RNA)]. The interaction with this small RNA fragment was further investigated with regard to stoichiometry, pH, salt and temperature. DbpA is not activated by E. coli ribosomes, nor by large subunits, while denatured ribosomes stimulate full ATPase activity. Taken together with the tight, site-specific binding to naked, unmodified 23S rRNA, this suggests a role for DbpA in ribosome biogenesis rather than translation.
大肠杆菌DEAD蛋白DbpA的腺苷三磷酸酶(ATPase)活性不同寻常,因为它受到23S核糖体RNA(rRNA)的特异性刺激。采用耦合光谱ATPase分析方法来研究DbpA与RNA及ATP之间的相互作用。23S rRNA结构域V的一个153个碱基的片段在激活DbpA方面,其动力学特性与完整的天然rRNA相同:催化常数(kcat)=600分钟-1,表观RNA解离常数(Kapp(RNA))=10 nM,ATP米氏常数(Km(ATP))=120 microM。在没有RNA的情况下,ATPase的周转数为0.25分钟-1。缺少该位点(核苷酸2454 - 2606)的23S rRNA片段基本无活性,其他RNA如聚腺苷酸(poly(A))和转运RNA(tRNA)也是如此。DbpA的相对RNA特异性范围为103至106 [最大反应速率(kmax)/表观RNA解离常数(Kapp(RNA))]。针对化学计量、pH值、盐浓度和温度,进一步研究了其与这个小RNA片段的相互作用。DbpA不会被大肠杆菌核糖体激活,也不会被大亚基激活,而变性核糖体则会刺激其完全ATPase活性。结合其与裸露的、未修饰的23S rRNA的紧密、位点特异性结合来看,这表明DbpA在核糖体生物合成而非翻译过程中发挥作用。