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小RNA发夹在噬菌体λ转录抗终止中的双重功能

Bipartite function of a small RNA hairpin in transcription antitermination in bacteriophage lambda.

作者信息

Chattopadhyay S, Garcia-Mena J, DeVito J, Wolska K, Das A

机构信息

Department of Microbiology, University of Connecticut Health Center, Farmington 06030, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Apr 25;92(9):4061-5. doi: 10.1073/pnas.92.9.4061.

Abstract

Transcription of downstream genes in the early operons of phage lambda requires a promoter-proximal element known as nut. This site acts in cis in the form of RNA to assemble a transcription antitermination complex which is composed of lambda N protein and at least four host factors. The nut-site RNA contains a small stem-loop structure called boxB. Here, we show that boxB RNA binds to N protein with high affinity and specificity. While N binding is confined to the 5' subdomain of the stem-loop, specific N recognition relies on both an intact stem-loop structure and two critical nucleotides in the pentamer loop. Substitutions of these nucleotides affect both N binding and antitermination. Remarkably, substitutions of other loop nucleotides also diminish antitermination in vivo, yet they have no detectable effect on N binding in vitro. These 3' loop mutants fail to support antitermination in a minimal system with RNA polymerase (RNAP), N, and the host factor NusA. Furthermore, the ability of NusA to stimulate the formation of the RNAP-boxB-N complex is diminished with these mutants. Hence, we suggest that boxB RNA performs two critical functions in antitermination. First, boxB binds to N and secures it near RNAP to enhance their interaction, presumably by increasing the local concentration of N. Second, boxB cooperates with NusA, most likely to bring N and RNAP in close contact and transform RNAP to the termination-resistant state.

摘要

噬菌体λ早期操纵子中,下游基因的转录需要一个称为nut的启动子近端元件。该位点以RNA形式顺式作用,组装一个由λ N蛋白和至少四种宿主因子组成的转录抗终止复合物。nut位点RNA包含一个称为boxB的小茎环结构。在这里,我们表明boxB RNA以高亲和力和特异性与N蛋白结合。虽然N蛋白的结合局限于茎环的5'亚结构域,但N蛋白的特异性识别依赖于完整的茎环结构和五聚体环中的两个关键核苷酸。这些核苷酸的取代会影响N蛋白的结合和抗终止作用。值得注意的是,其他环核苷酸的取代在体内也会减弱抗终止作用,但在体外对N蛋白的结合没有可检测到的影响。这些3'环突变体在含有RNA聚合酶(RNAP)、N蛋白和宿主因子NusA的最小系统中无法支持抗终止作用。此外,这些突变体降低了NusA刺激RNAP-boxB-N复合物形成的能力。因此,我们认为boxB RNA在抗终止过程中发挥了两个关键功能。首先,boxB与N蛋白结合并将其固定在RNAP附近,可能通过增加N蛋白的局部浓度来增强它们之间的相互作用。其次,boxB与NusA协同作用,最有可能使N蛋白和RNAP紧密接触,并将RNAP转变为抗终止状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d88d/42102/1ee7eb50e490/pnas01493-0438-a.jpg

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