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Restriction glycosylases: involvement of endonuclease activities in the restriction process

机译:限制性糖基化酶:内切酶活性参与限制性酶切过程

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摘要

All restriction enzymes examined are phosphodiesterases generating 3΄-OH and 5΄-P ends, but one restriction enzyme (restriction glycosylase) excises unmethylated bases from its recognition sequence. Whether its restriction activity involves endonucleolytic cleavage remains unclear. One report on this enzyme, R.PabI from a hyperthermophile, ascribed the breakage to high temperature while another showed its weak AP lyase activity generates atypical ends. Here, we addressed this issue in mesophiles. We purified R.PabI homologs from Campylobacter coli (R.CcoLI) and Helicobacter pylori (R.HpyAXII) and demonstrated their DNA cleavage, DNA glycosylase and AP lyase activities in vitro at 37°C. The AP lyase activity is more coupled with glycosylase activity in R.CcoLI than in R.PabI. R.CcoLI/R.PabI expression caused restriction of incoming bacteriophage/plasmid DNA and endogenous chromosomal DNA within Escherichia coli at 37°C. The R.PabI-mediated restriction was promoted by AP endonuclease action in vivo or in vitro. These results reveal the role of endonucleolytic DNA cleavage in restriction and yet point to diversity among the endonucleases. The cleaved ends are difficult to repair in vivo, which may indicate their biological significance. These results support generalization of the concept of restriction–modification system to the concept of self-recognizing epigenetic system, which combines any epigenetic labeling and any DNA damaging.
机译:所检查的所有限制性酶都是产生3′-OH和5′-P末端的磷酸二酯酶,但是一种限制性酶(限制性糖基化酶)从其识别序列中切除未甲基化的碱基。其限制性活性是否涉及核酸内切裂解尚不清楚。关于该酶的一种报道,来自嗜热嗜热菌的R.PabI将断裂归因于高温,而另一则报道则表明其弱的AP裂解酶活性产生非典型末端。在这里,我们以嗜温菌论及了这个问题。我们从弯曲杆菌(R.CcoLI)和幽门螺杆菌(R.HpyAXII)中纯化了R.PabI同源物,并在37°C体外证明了它们的DNA裂解,DNA糖基化酶和AP裂解酶活性。与R.PabI相比,R.CcoLI中的AP裂解酶活性与糖基化酶活性更相关。 R.CcoLI / R.PabI的表达导致大肠杆菌在37°C内进入的噬菌体/质粒DNA和内源染色体DNA受到限制。在体内或体外,AP核酸内切酶的作用促进了R.PabI介导的限制。这些结果揭示了内切核酸酶切割在限制中的作用,但指出了内切核酸酶之间的多样性。切割的末端难以在体内修复,这可能表明它们的生物学意义。这些结果支持将限制性修饰系统概念推广到自我识别表观遗传系统的概念,该概念结合了任何表观遗传标记和任何DNA损伤。

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