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Efficiency and pattern of UV pulse laser-induced RNA–RNA cross-linking in the ribosome

机译:紫外脉冲激光诱导核糖体中RNA-RNA交联的效率和方式

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摘要

Escherichia coli ribosomes were irradiated with a KrF excimer laser (248 nm, 22 ns pulse) with incident pulse energies in the range of 10–40 mJ for a 1 cm2 area, corresponding to fluences of 4.5 to 18 × 109 W m–2, to determine strand breakage yields and the frequency and pattern of RNA–RNA cross- linking in the 16S rRNA. Samples were irradiated in a cuvette with one laser pulse or in a flow cell with an average of 4.6 pulses per sample. The yield of strand breaks per photon was intensity dependent, with values of 0.7 to 1.3 × 10–3 over the incident intensity range studied. The yield for RNA–RNA cross-linking was 3 × 10–4 cross-links/photon at the intensity of 4.5 × 109 W m–2, an ∼4-fold higher yield per photon than obtained with a transilluminator. The cross-link yield/photon decreased at higher light intensities, probably due to intensity-dependent photoreversal. The pattern of cross-linking was similar to that observed with low intensity irradiation but with four additional long-range cross-links not previously seen in E.coli ribosomes. Cross- linking frequencies obtained with one laser pulse are more correlated to internucleotide distances than are frequencies obtained with transilluminator irradiation.
机译:用KrF准分子激光(248 nm,22 ns脉冲)以10–40 mJ的入射脉冲能量照射大肠杆菌核糖体,面积为1 cm 2 ,对应的通量范围为4.5至18×10 9 W m –2 ,以确定链断裂产量以及16S rRNA中RNA–RNA交联的频率和模式。样品在比色皿中用一个激光脉冲照射,或在流通池中平均每个样品照射4.6脉冲。每个光子的断链产率取决于强度,在研究的入射强度范围内,其值为0.7至1.3×10 –3 。 RNA–RNA交联的产量为3×10 –4 交联/光子,强度为4.5×10 9 W m –2 < / sup>,比使用透射照明器获得的每光子高约4倍。交联产率/光子在较高的光强度下降低,这可能是由于强度依赖性光逆转所致。交联的模式与在低强度辐射下观察到的相似,但具有大肠杆菌核糖体以前未见的四个其他长距离交联。一个激光脉冲获得的交联频率与核苷酸间距离的相关性比透射照射器辐射获得的频率更紧密。

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