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The Ribosomal Protein L2 Interacts with the RNA Polymerase α Subunit and Acts as a Transcription Modulator in Escherichia coli

机译:核糖体蛋白L2与RNA聚合酶α亚基相互作用并在大肠杆菌中充当转录调节剂

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摘要

Identification of interacting proteins in stable complexes is essential to understand the mechanisms that regulate cellular processes at the molecular level. Transcription initiation in prokaryotes requires coordinated protein-protein and protein-DNA interactions that often involve one or more transcription factors in addition to RNA polymerase (RNAP) subunits. The RNAP α subunit (RNAPα) is a key regulatory element in gene transcription and functions through direct interaction with other proteins to control all stages of this process. A clear description of the RNAPα protein partners should greatly increase our understanding of transcription modulation. A functional proteomics approach was employed to investigate protein components that specifically interact with RNAPα. A tagged form of Escherichia coli RNAPα was used as bait to determine the molecular partners of this subunit in a whole-cell extract. Among other interacting proteins, 50S ribosomal protein L2 (RPL2) was clearly identified by mass spectrometry. The direct interaction between RNAPα and RPL2 was confirmed both in vivo and in vitro by performing coimmunoprecipitation and bacterial two-hybrid experiments. The functional role of this interaction was also investigated in the presence of a ribosomal promoter by using a β-galactosidase gene reporter assay. The results clearly demonstrated that RPL2 was able to increase β-galactosidase expression only in the presence of a specific ribosomal promoter, whereas it was inactive when it was assayed with an unrelated promoter. Interestingly, other ribosomal proteins (L1, L3, L20, and L27) did not have any effect on rRNA expression. The findings reported here strongly suggest that in addition to its role in ribosome assembly the highly conserved RPL2 protein plays a specific and direct role in regulation of transcription.
机译:鉴定稳定复合物中相互作用的蛋白质对于了解在分子水平上调控细胞过程的机制至关重要。原核生物的转录起始需要蛋白质-蛋白质和蛋白质-DNA的协调相互作用,除了RNA聚合酶(RNAP)亚基外,通常还涉及一种或多种转录因子。 RNAPα亚基(RNAPα)是基因转录中的关键调控元件,并通过与其他蛋白质的直接相互作用来控制该过程的所有阶段。对RNAPα蛋白伴侣的清晰描述应大大增进我们对转录调节的理解。功能蛋白质组学方法用于研究与RNAPα特异性相互作用的蛋白质成分。使用标签形式的大肠杆菌RNAPα作为诱饵,以确定全细胞提取物中该亚基的分子伴侣。在其他相互作用蛋白中,质谱已清楚地鉴定出50S核糖体蛋白L2(RPL2)。 RNAPα和RPL2之间的直接相互作用通过进行共免疫沉淀和细菌两杂交实验在体内和体外得到证实。在存在核糖体启动子的情况下,还通过使用β-半乳糖苷酶基因报告基因分析法研究了这种相互作用的功能作用。结果清楚地表明,RPL2仅在存在特定核糖体启动子的情况下才能够增加β-半乳糖苷酶的表达,而当用无关的启动子进行分析时,RPL2是无活性的。有趣的是,其他核糖体蛋白(L1,L3,L20和L27)对rRNA表达没有任何影响。此处报道的发现强烈表明,除了其在核糖体装配中的作用外,高度保守的RPL2蛋白还在转录调节中起着特定而直接的作用。

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