首页> 外文期刊>Nucleic Acids Research >Translational termination in Escherichia coli: three bases following the stop codon crosslink to release factor 2 and affect the decoding efficiency of UGA-containing signals.
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Translational termination in Escherichia coli: three bases following the stop codon crosslink to release factor 2 and affect the decoding efficiency of UGA-containing signals.

机译:大肠杆菌中的翻译终止:终止密码子交联后释放释放因子2的三个碱基,影响含UGA信号的解码效率。

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摘要

The observations that the Escherichia coli release factor 2 (RF2) crosslinks with the base following the stop codon (+4 N), and that the identity of this base strongly influences the decoding efficiency of stop signals, stimulated us to determine whether there was a more extended termination signal for RF2 recognition. Analysis of the 3' contexts of the 1248 genes in the E.coli genome terminating with UGA showed a strong bias for U in the +4 position and a general bias for A and against C in most positions to +10, consistent with the concept of an extended sequence element. Site-directed crosslinking occurred to RF2 from a thio-U sited at the +4, +5 and +6 bases following the UGA stop codon but not beyond (+7 to +10). Varying the +4 to +6 bases modulated the strength of the crosslink from the +1 invariant U to RF2. A strong selection bias for particular bases in the +4 to +6 positions of certain E. coli UGANNN termination sites correlated in some cases with crosslinking efficiency to RF2 and in vivo termination signal strength. These data suggest that RF2 may recognise at least a hexanucleotide UGA-containing sequence and that particular base combinations within this sequence influence termination signal decoding efficiency.
机译:观察到大肠杆菌释放因子2(RF2)与终止密码子(+4 N)之后的碱基发生交联,并且该碱基的身份强烈影响终止信号的解码效率,这刺激了我们确定是否存在一个用于RF2识别的更多扩展终端信号。对以UGA终止的大肠杆菌基因组中1248个基因的3'上下文的分析显示,在+4位上对U有很强的偏见,而在大多数位点上对A和C都偏爱到+10,这与这个概念一致扩展序列元素。在UGA终止密码子之后,位于+ 4,+ 5和+6碱基处的硫代U在RF2上发生了定点交联,但不超过(+7至+10)。改变+4至+6碱基可调节从+1不变U到RF2的交联强度。在某些情况下,对某些大肠杆菌UGANNN终止位点+4至+6位特定碱基的强烈选择偏倚与RF2的交联效率和体内终止信号强度相关。这些数据表明RF2可以识别至少一个包含UGTA的六核苷酸序列,并且该序列内的特定碱基组合会影响终止信号的解码效率。

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