Uchiumi T, Kominami R
Department of Biochemistry, Niigata University School of Medicine, Niigata 951 Japan.
J Biol Chem. 1997 Feb 7;272(6):3302-8. doi: 10.1074/jbc.272.6.3302.
We have investigated binding of rat ribosomal proteins to the "GTPase domain" of 28 S rRNA and its effect on accessibility to the anti-28 S autoantibody, which recognizes a unique tertiary structure of this RNA domain. Ribosomal protein L12 and P protein complex (P complex) consisting of P0, P1, and P2 both bound to the GTPase domain of rat 28 S rRNA in a buffer containing Mg2. Chemical footprinting analysis of their binding sites revealed that the P complex mainly protected a conserved internal loop region comprising residues 1855-1861 and 1920-1922, whereas L12 protected an adjacent helix region encompassing residues 1867-1878 and 1887-1899. These sites are close to but distinct from the binding site for anti-28 S antibody determined previously. The bindings of P complex and L12 increased the anti-28 S accessibility, as revealed by gel retardation and quantitative immunoprecipitation analyses. In a Mg2+-eliminated condition, the RNA failed to bind to either anti-28 S or L12 but assembled into a complex under their coexistence. However, the RNA retained a property of binding to the P complex even in the absence of Mg2+, and this binding conferred high anti-28 S accessibility. These results indicated that the bindings of the P complex and L12 to their respective sites influenced the GTPase domain to increase the accessibility to anti-28 S. A possible RNA conformation adjusted by the protein bindings is discussed.
我们研究了大鼠核糖体蛋白与28 S rRNA“GTPase结构域”的结合及其对识别该RNA结构域独特三级结构的抗28 S自身抗体可及性的影响。核糖体蛋白L12和由P0、P1和P2组成的P蛋白复合物(P复合物)在含Mg2+的缓冲液中均与大鼠28 S rRNA的GTPase结构域结合。对其结合位点的化学足迹分析表明,P复合物主要保护包含1855 - 1861和1920 - 1922残基的保守内环区域,而L12保护包含1867 - 1878和1887 - 1899残基的相邻螺旋区域。这些位点与先前确定的抗28 S抗体结合位点接近但不同。凝胶阻滞和定量免疫沉淀分析表明,P复合物和L12的结合增加了抗28 S的可及性。在去除Mg2+的条件下,RNA既不能与抗28 S结合,也不能与L12结合,但在它们共存时会组装成复合物。然而,即使在没有Mg2+的情况下,RNA仍保留与P复合物结合的特性,并且这种结合赋予了高抗28 S可及性。这些结果表明,P复合物和L12与其各自位点的结合影响了GTPase结构域,从而增加了对抗28 S的可及性。文中讨论了由蛋白质结合调节的可能的RNA构象。