Timmins P A, Langowski J, Brown R S
Institut Laue-Langevin, Grenoble, France.
Nucleic Acids Res. 1988 Sep 12;16(17):8633-44. doi: 10.1093/nar/16.17.8633.
The precise molecular composition of the Xenopus laevis TFIIIA-5S ribosomal RNA complex (7S particle) has been established from small angle neutron and dynamic light scattering. The molecular weight of the particle was found to be 95,700 +/- 10,000 and 86,700 +/- 9000 daltons from these two methods respectively. The observed match point of 54.4% D2O obtained from contrast variation experiments indicates a 1:1 molar ratio. It is concluded that only a single molecule of TFIIIA, a zinc-finger protein, and of 5S RNA are present in this complex. At high neutron scattering contrast radius of gyration of 42.3 +/- 2 A was found for the 7S particle. In addition a diffusion coefficient of 4.4 x 10(-11) [m2 s-1] and a sedimentation coefficient of 6.2S were determined. The hydrodynamic radius obtained for the 7S particle is 48 +/- 5 A. A simple elongated cylindrical model with dimensions of 140 A length and 59 A diameter is compatible with the neutron results. A globular model can be excluded by the shallow nature of the neutron scattering curves. It is proposed that the observed difference of 15 A in length between the 7S particle and isolated 5S RNA most likely indicates that part(s) of the protein protrudes from the end(s) of the RNA molecule. There is no biochemical evidence for any gross alteration in 5S RNA conformation upon binding to TFIIIA.
非洲爪蟾TFIIIA - 5S核糖体RNA复合物(7S颗粒)的确切分子组成已通过小角中子散射和动态光散射确定。通过这两种方法分别测得该颗粒的分子量为95,700±10,000道尔顿和86,700±9000道尔顿。从对比变化实验中得到的54.4% D2O的观察匹配点表明其摩尔比为1:1。得出的结论是,该复合物中仅存在单个TFIIIA分子(一种锌指蛋白)和单个5S RNA分子。在高中子散射对比度下,发现7S颗粒的回转半径为42.3±2埃。此外,还测定了扩散系数为4.4×10⁻¹¹ [m² s⁻¹],沉降系数为6.2S。7S颗粒的流体动力学半径为48±5埃。一个长度为140埃、直径为59埃的简单细长圆柱形模型与中子散射结果相符。球状模型可因中子散射曲线较浅的性质而被排除。有人提出,观察到的7S颗粒与分离的5S RNA之间15埃的长度差异很可能表明蛋白质的一部分从RNA分子的末端伸出。没有生化证据表明5S RNA与TFIIIA结合后其构象有任何重大改变。