Xing Y, Draper D E
Department of Chemistry, Johns Hopkins University, Baltimore, Maryland 21218, USA.
Biochemistry. 1996 Feb 6;35(5):1581-8. doi: 10.1021/bi952132o.
Ribosomal protein L11 interacts with a 58-nucleotide domain of large subunit ribosomal RNA; both the protein and its RNA target have been highly conserved. The antibiotic thiostrepton recognizes the same RNA domain, and binds to the ribosome cooperatively with L11. Experiments presented here show that RNA recognition and thiostrepton cooperativity can be attributed to C- and N-terminal domains of L11, respectively. Under trypsin digestion conditions that degrade Bacillus stearothermophilus L11 to small fragments, the target RNA protects the C-terminal 77 residues from digestion, and thiostrepton and RNA in combination protect the entire protein. A 76-residue C-terminal fragment of L11 was overexpressed and shown to fold into a stable structure binding ribosomal RNA with essentially the same properties as full-length L11. An L11.thiostrepton.RNA complex was 100-200-fold more stable than expected on the basis of L11-RNA and thiostrepton-RNA binding affinities; similar measurements with the C-terminal fragment detected no cooperativity with thiostrepton. L11 function is thus more complex than simple interaction with ribosomal RNA; we suggest that thiostrepton mimics some ribosomal component or factor that normally interacts with the L11 N-terminal domain.
核糖体蛋白L11与核糖体大亚基RNA的一个58个核苷酸的结构域相互作用;该蛋白及其RNA靶点都高度保守。抗生素硫链丝菌素识别相同的RNA结构域,并与L11协同结合到核糖体上。本文所展示的实验表明,RNA识别和硫链丝菌素协同作用可分别归因于L11的C端和N端结构域。在胰蛋白酶消化条件下,嗜热脂肪芽孢杆菌L11被降解为小片段,靶RNA保护C端的77个残基不被消化,硫链丝菌素和RNA共同保护整个蛋白。L11的一个76个残基的C端片段被过量表达,并显示折叠成一种稳定结构,与核糖体RNA结合,其性质与全长L11基本相同。L11-硫链丝菌素-RNA复合物的稳定性比基于L11-RNA和硫链丝菌素-RNA结合亲和力预期的高100 - 200倍;对C端片段进行的类似测量未检测到与硫链丝菌素的协同作用。因此,L11的功能比与核糖体RNA的简单相互作用更为复杂;我们认为硫链丝菌素模拟了一些通常与L11 N端结构域相互作用的核糖体成分或因子。