Ritt C, Grimm R, Fernández S, Alonso J C, Grasser K D
Institut für Biologie III, Albert-Ludwigs-Universität Freiburg, Germany.
Plant J. 1998 Jun;14(5):623-31. doi: 10.1046/j.1365-313x.1998.00154.x.
In contrast to other eukaryotes which usually express two closely related HMG1-like proteins, plant cells have multiple relatively variable proteins of this type. A systematic analysis of the DNA-binding properties of four chromosomal HMG domain proteins from maize revealed that they bind linear DNA with similar affinity. HMGa, HMGc1/2 and HMGd specifically recognise diverse DNA structures such as DNA mini-circles and supercoiled DNA. They induce DNA-bending, and constrain negative superhelical turns in DNA. In the presence of DNA, the HMG domain proteins can self-associate, whereas they are monomeric in solution. The maize HMG1-like proteins have the ability to facilitate the formation of nucleoprotein structures to different extents, since they can efficiently replace a bacterial chromatin-associated protein required for the site-specific beta-mediated recombination. A variable function of the HMG1-like proteins is indicated by their differential association with maize chromatin, as judged by their 'extractability' from chromatin with spermine and ethidium bromide. Collectively, these findings suggest that the various plant chromosomal HMG domain proteins could be adapted to act in different nucleoprotein structures in vivo.
与通常表达两种密切相关的类HMG1蛋白的其他真核生物不同,植物细胞有多种这类相对可变的蛋白。对来自玉米的四种染色体HMG结构域蛋白的DNA结合特性进行系统分析发现,它们以相似的亲和力结合线性DNA。HMGa、HMGc1/2和HMGd特异性识别多种DNA结构,如DNA小环和超螺旋DNA。它们诱导DNA弯曲,并限制DNA中的负超螺旋圈数。在有DNA存在的情况下,HMG结构域蛋白可以自我缔合,而在溶液中它们是单体形式。玉米类HMG1蛋白有能力在不同程度上促进核蛋白结构的形成,因为它们可以有效地替代位点特异性β介导重组所需的一种细菌染色质相关蛋白。从用精胺和溴化乙锭从染色质中“提取”的情况判断,类HMG1蛋白与玉米染色质的差异结合表明了其功能的多样性。总的来说,这些发现表明,各种植物染色体HMG结构域蛋白可能适合在体内不同的核蛋白结构中发挥作用。