Lederer H, Mortensen K, May R P, Baer G, Crespi H L, Dersch D, Heumann H
Max-Planck-Institut für Biochemie, Martinsried, Germany.
J Mol Biol. 1991 Jun 20;219(4):747-55. doi: 10.1016/0022-2836(91)90669-w.
By means of neutron solution scattering we determined the position and orientation of core enzyme and sigma-factor within the Escherichia coli RNA polymerase holoenzyme with the aim of improving existing models. The individual components, core enzyme (E) and sigma-factor (sigma), were highlighted by deuterium labeling and their center-to-center distances determined in the monomeric and the dimeric holoenzyme. The following distance parameters were obtained: dE1-sigma 1 = 8.6(+/- 1) nm, dE1-E2 = 11.5(+/- 1) nm, d sigma 1-sigma 2 = 12.0(+/- 0.7) nm, dE1-sigma 2 = 9(+/- 3) nm. Using a triangulation procedure the position of the sigma-factors, sigma 1 and sigma 2, were determined with respect to the mass center of the core enzyme molecules, E1 and E2, assuming a symmetrical arrangement of the holoenzyme molecules in the dimer (C2 symmetry). In addition, the orientation of the sigma-factor with respect to core enzyme was estimated by means of model calculations. The obtained model of holoenzyme depicts the sigma-factor as buried in a groove of core enzyme, probably between the large subunits beta' and beta.
借助中子溶液散射技术,我们测定了核心酶和σ因子在大肠杆菌RNA聚合酶全酶中的位置和方向,目的是改进现有模型。通过氘标记突出了各个组分,即核心酶(E)和σ因子(σ),并在单体和二聚体全酶中测定了它们的中心距。获得了以下距离参数:dE1-σ1 = 8.6(±1)nm,dE1-E2 = 11.5(±1)nm,dσ1-σ2 = 12.0(±0.7)nm,dE1-σ2 = 9(±3)nm。采用三角测量法,在假定全酶分子在二聚体中呈对称排列(C2对称性)的情况下,确定了σ因子σ1和σ2相对于核心酶分子E1和E2质心的位置。此外,通过模型计算估算了σ因子相对于核心酶的方向。所获得的全酶模型显示,σ因子埋藏在核心酶表面的一个沟中,可能位于大亚基β'和β之间。