Egebjerg J, Christiansen J, Garrett R A
Biostrukturkemi, Aarhus Universitet, Denmark.
J Mol Biol. 1991 Nov 20;222(2):251-64. doi: 10.1016/0022-2836(91)90210-w.
The attachment sites of the primary binding proteins L1, L2 and L23 on 23 S ribosomal RNA of Escherichia coli were examined by a chemical and ribonuclease footprinting method using several probes with different specificities. The results show that the sites are confined to localized RNA regions within the large ribonuclease-protected ribonucleoprotein fragments that were characterized earlier. They are as follows: (1) L1 recognizes a tertiary structural motif in domain V centred on two interacting internal loops; the main protein interaction sites occur at the internal loop/helix junctions. (2) The L2 site constitutes a single irregular stem/loop structure in the centre of domain IV where non-Watson-Crick pairing is likely to occur. (3) L23 recognizes a tertiary structural motif involving a single terminal loop structure and part of an adjacent internal loop at the centre of domain III. Each of the three primary binding proteins, whose presence is essential for ribosomal assembly, has been associated with important ribosomal functions: L1 lies in the E-site for deacylated tRNA binding while L2 and L23 have been implicated in the P and A substrate sites, respectively, of the peptidyl transferase centre. Moreover, each of the protein sites, but particularly those of L2 and L23, lies at the centre of RNA domains where they can maximally influence both the assembly of secondary binding proteins and the function of the RNA region.
采用几种具有不同特异性的探针,通过化学和核糖核酸酶足迹法研究了主要结合蛋白L1、L2和L23在大肠杆菌23S核糖体RNA上的结合位点。结果表明,这些位点局限于先前已鉴定的大的核糖核酸酶保护的核糖核蛋白片段内的局部RNA区域。具体如下:(1)L1识别结构域V中以两个相互作用的内环为中心的三级结构基序;主要的蛋白质相互作用位点出现在内环/螺旋交界处。(2)L2位点在结构域IV的中心构成一个单一的不规则茎环结构,可能发生非沃森-克里克配对。(3)L23识别一个三级结构基序,该基序涉及结构域III中心的一个单一末端环结构和相邻内环的一部分。这三种主要结合蛋白的存在对核糖体组装至关重要,它们各自都与重要的核糖体功能相关:L1位于脱酰基tRNA结合的E位点,而L2和L23分别与肽基转移酶中心的P和A底物位点有关。此外,每个蛋白质位点,尤其是L2和L23的位点,都位于RNA结构域的中心,在那里它们可以最大程度地影响二级结合蛋白的组装和RNA区域的功能。