Dutta S, Akey I V, Dingwall C, Hartman K L, Laue T, Nolte R T, Head J F, Akey C W
Department of Physiology and Biophysics, Boston University School of Medicine, 700 Albany Street, Boston, MA 02118, USA.
Mol Cell. 2001 Oct;8(4):841-53. doi: 10.1016/s1097-2765(01)00354-9.
The efficient assembly of histone complexes and nucleosomes requires the participation of molecular chaperones. Currently, there is a paucity of data on their mechanism of action. We now present the structure of an N-terminal domain of nucleoplasmin (Np-core) at 2.3 A resolution. The Np-core monomer is an eight-stranded beta barrel that fits snugly within a stable pentamer. In the crystal, two pentamers associate to form a decamer. We show that both Np and Np-core are competent to assemble large complexes that contain the four core histones. Further experiments and modeling suggest that these complexes each contain five histone octamers which dock to a central Np decamer. This work has important ramifications for models of histone storage, sperm chromatin decondensation, and nucleosome assembly.
组蛋白复合物和核小体的高效组装需要分子伴侣的参与。目前,关于它们的作用机制的数据很少。我们现在展示了核质蛋白N端结构域(Np-core)在2.3埃分辨率下的结构。Np-core单体是一个八链β桶,紧密地装配在一个稳定的五聚体内。在晶体中,两个五聚体结合形成一个十聚体。我们表明,Np和Np-core都能够组装包含四种核心组蛋白的大型复合物。进一步的实验和模型表明,这些复合物各自包含五个组蛋白八聚体,它们与一个中央Np十聚体对接。这项工作对组蛋白储存、精子染色质解聚和核小体组装模型具有重要影响。