Chattopadhyaya R, Ghosh K, Namboodiri V M
Department of Biochemistry, Bose Institute, Calcutta, India.
J Biomol Struct Dyn. 2000 Oct;18(2):181-97. doi: 10.1080/07391102.2000.10506657.
A complete three dimensional model (RCSB000408; PDB code 1qaa) for the LexA repressor dimer bound to the recA operator site consistent with relevant biochemical and biophysical data for the repressor is proposed. A model of interaction of the N-terminal operator binding domain 1-72 with the operator was available. We have modelled residues 106-202 of LexA on the basis of the crystal structure of a homologous protein, UmuD'. Residues 70-105 have been modelled by us, residues 70-77 comprising the real hinge, followed by a beta-strand and an alpha-helix, both interacting with the rest of the C-domain. The preexponential Arrhenius factor for the LexA autocleavage is shown to be approximately 10(9) s(-1) at 298K whereas the exponential factor is approximately 2 x 10(-12), demanding that the autocleavage site is quite close to the catalytic site but reaction is slow due to an activation energy barrier. We propose that in the operator bound form, Ala 84- Gly 85 is about 7-10A from the catalytic groups, but the reaction does not occur as the geometry is not suitable for a nucleophilic attack from Ser 119 Ogamma, since Pro 87 is held in the cis conformation. When pH is elevated or under the action of activated RecA, cleavage may occur following a cis --> trans isomerization at Pro 87 and/or a rotation of the region beta9-beta10 about beta7-beta8 following the disruption of two hydrogen bonds. We show that the C-C interaction comprises the approach of two negatively charged surfaces neutralized by sodium ions, the C-domains of the monomers making a new beta barrel at the interface burying 710A2 of total surface area of each monomer.
提出了一个与LexA阻遏物相关生化和生物物理数据一致的、与recA操纵基因位点结合的LexA阻遏物二聚体的完整三维模型(RCSB000408;PDB代码1qaa)。已有N端操纵基因结合结构域1 - 72与操纵基因相互作用的模型。我们基于同源蛋白UmuD'的晶体结构对LexA的106 - 202位残基进行了建模。70 - 105位残基由我们建模,其中70 - 77位残基构成真正的铰链区,接着是一条β链和一个α螺旋,二者均与C结构域的其余部分相互作用。LexA自切割的指前因子在298K时约为10(9) s(-1),而指数因子约为2×10(-12),这表明自切割位点与催化位点相当接近,但由于活化能垒反应较慢。我们提出,在与操纵基因结合的形式中,Ala 84 - Gly 85距催化基团约7 - 10埃,但由于几何结构不适合Ser