Lehrstuhl Biopolymere und Forschungszentrum für Bio-Makromoleküle, Universität Bayreuth, Bayreuth, Germany.
Nucleic Acids Res. 2010 Jan;38(1):314-26. doi: 10.1093/nar/gkp736. Epub 2009 Oct 23.
Phage lambda propagation in Escherichia coli host cells requires transcription antitermination on the lambda chromosome mediated by lambdaN protein and four host Nus factors, NusA, B, E (ribosomal S10) and G. Interaction of E. coli NusB:NusE heterodimer with the single stranded BoxA motif of lambdanutL or lambdanutR RNA is crucial for this reaction. Similarly, binding of NusB:NusE to a BoxA motif is essential to suppress transcription termination in the ribosomal RNA (rrn) operons. We used fluorescence anisotropy to measure the binding properties of NusB and of NusB:NusE heterodimer to BoxA-containing RNAs differing in length and sequence. Our results demonstrate that BoxA is necessary and sufficient for binding. We also studied the gain-of-function D118N NusB mutant that allows lambda growth in nusA1 or nusE71 mutants. In vivo lambda burst-size determinations, CD thermal unfolding measurements and X-ray crystallography of this as well as various other NusB D118 mutants showed the importance of size and polarity of amino acid 118 for RNA binding and other interactions. Our work suggests that the affinity of the NusB:NusE complex to BoxA RNA is precisely tuned to maximize control of transcription termination.
噬菌体 λ 在大肠杆菌宿主细胞中的繁殖需要 λN 蛋白和四个宿主 Nus 因子(NusA、B、E(核糖体 S10)和 G)介导的 λ 染色体上的转录抗终止。大肠杆菌 NusB:NusE 异二聚体与 λnutL 或 λnutR RNA 的单链 BoxA 基序的相互作用对于该反应至关重要。同样,NusB:NusE 与 BoxA 基序的结合对于抑制核糖体 RNA (rrn) 操纵子中的转录终止也是必不可少的。我们使用荧光各向异性测量了 NusB 和 NusB:NusE 异二聚体与长度和序列不同的含有 BoxA 的 RNA 的结合特性。我们的结果表明 BoxA 是结合所必需和充分的。我们还研究了具有功能获得性的 D118N NusB 突变体,该突变体允许在 nusA1 或 nusE71 突变体中生长。体内 λ 爆发大小测定、CD 热解折叠测量和 X 射线晶体学研究表明,氨基酸 118 的大小和极性对于 RNA 结合和其他相互作用非常重要。我们的工作表明,NusB:NusE 复合物与 BoxA RNA 的亲和力被精确地调整,以最大限度地控制转录终止。