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首页> 外文期刊>RNA >The 3 ' substrate determinants for the catalytic efficiency of the Bacillus subtilis RNase P holoenzyme suggest autolytic processing of the RNase P RNA in vivo
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The 3 ' substrate determinants for the catalytic efficiency of the Bacillus subtilis RNase P holoenzyme suggest autolytic processing of the RNase P RNA in vivo

机译:枯草芽孢杆菌RNase P全酶催化效率的3'底物决定因素提示RNase P RNA在体内的自溶过程

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We investigated the catalytic efficiency and the specificity of the Bacillus subtilis RNase P holoenzyme reaction with substrates that contain a single strand, a hairpin loop, or a tRNA 3' to the cleavage site. At a saturating ribozyme concentration, RNase P can cleave a single-stranded RNA at similar to0.6 min(-1) at pH 7.3, Replacing the single-stranded RNA 3' to the cleavage site by a hairpin loop or by the yeast tRNA(Phe) increases the cleavage rate by up to similar to 600-fold and similar to3,200-fold, respectively. These results show that compared to a single-stranded RNA substrate, the cleavage rate for the holoenzyme reaction is primarily enhanced by an acceptor-stem-like helix. Substrate binding, similar to7-10 muM for a single-stranded RNA, improves by similar to1,000-fold upon the addition of the tRNA. The efficiency of the RNase P holoenzyme cleaving a single-stranded RNA is sufficiently high to consider autolytic processing of the RNase P RNA (denoted P RNA) transcript in the cell. The addition of the RNase P protein to a precursor form of the P RNA in vitro results in autolytic processing of the 5' and the 3' end of this precursor in a matter of minutes. Autolytic processing produces the reported 5' end of the mature P RNA. The precise 3' end generated by autolytic processing is different over the course of the reaction and the final product is 4 nt shorter than the reported 3' end of the B. subtilis P RNA. The observed 3' end in vitro is consistent with the property of the holoenzyme reaction with single-stranded RNA substrates. The discrepancy with the reported 3' end may be due to other processing events in vivo or inaccurate determination of the mature 3' end of the P RNA isolated from the cell, We propose that the mature B. subtilis P RNA is generated at least in part by autolytic processing upon the binding of the RNase P protein to the precursor P RNA. [References: 38]
机译:我们调查了枯草芽孢杆菌RNase P全酶与底物的催化效率和特异性,该底物包含单链,发夹环或tRNA 3'到裂解位点。在饱和的核酶浓度下,RNase P可以在pH 7.3时以0.6 min(-1)的速率裂解单链RNA,通过发夹环或酵母tRNA将单链RNA 3'置换为裂解位点(Phe)使切割速率分别增加多达600倍和3200倍。这些结果表明,与单链RNA底物相比,全酶反应的切割速率主要通过受体-茎状螺旋增强。加入tRNA后,底物结合(类似于单链RNA的7-10μM)提高了约1,000倍。 RNase P全酶切割单链RNA的效率足够高,可以考虑对细胞中RNase P RNA(表示为P RNA)转录本进行自溶加工。在体外将RNase P蛋白添加到P RNA的前体形式中,导致该前体的5'和3'末端在数分钟内自动水解。自溶加工产生了成熟P RNA的5'末端。在整个反应过程中,通过自溶过程产生的精确3'末端有所不同,最终产物比枯草芽孢杆菌P RNA的3'末端短4 nt。体外观察到的3'端与单链RNA底物的全酶反应的性质一致。与报道的3'末端的差异可能是由于体内的其他加工事件或从细胞中分离出的P RNA的成熟3'末端的测定不准确所致。我们建议,成熟枯草芽孢杆菌P RNA至少在通过RNA酶P蛋白与前体P RNA的结合的自溶处理来部分分离。 [参考:38]

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