Structural Biology Unit, CIC bioGUNE, CIBERehd, 48160 Derio, Spain.
Biochem Soc Trans. 2011 Jan;39(1):25-30. doi: 10.1042/BST0390025.
We review recent results on the complete structure of the archaeal RNAP (RNA polymerase) enzyme of Sulfolobus shibatae. We compare the three crystal forms in which this RNAP packs (space groups P2₁2₁2₁, P2₁2₁2 and P2₁) and provide a preliminary biophysical characterization of the newly identified 13-subunit Rpo13. The availability of different crystal forms for this RNAP allows the analysis of the packing degeneracy and the intermolecular interactions that determine this degeneracy. We observe the pivotal role played by the protruding stalk composed of subunits Rpo4 and Rpo7 in the lattice contacts. Aided by MALLS (multi-angle laser light scattering), we have initiated the biophysical characterization of the recombinantly expressed and purified subunit Rpo13, a necessary step towards the understanding of Rpo13's role in archaeal transcription.
我们综述了嗜热古菌 Sulfolobus shibatae 的 RNA 聚合酶(RNAP)的完整结构的最新研究成果。我们比较了该 RNAP 三种包装形式(空间群 P2₁2₁2₁、P2₁2₁2 和 P2₁),并对新鉴定的 13 亚基 Rpo13 进行了初步的生物物理表征。这种 RNAP 具有不同的晶体形式,这使得对包装简并性和决定这种简并性的分子间相互作用的分析成为可能。我们观察到由亚基 Rpo4 和 Rpo7 组成的突出的柄在晶格接触中起着关键作用。借助多角度激光散射(MALLS),我们已经开始对重组表达和纯化的亚基 Rpo13 进行生物物理表征,这是理解 Rpo13 在古菌转录中作用的必要步骤。