首页> 美国卫生研究院文献>Nucleic Acids Research >Filamentous phage replication initiator protein gpII forms a covalent complex with the 5 end of the nick it introduced.
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Filamentous phage replication initiator protein gpII forms a covalent complex with the 5 end of the nick it introduced.

机译:丝状噬菌体复制起始蛋白gpII与它引入的缺口的5端形成共价复合物。

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摘要

Rolling circle type DNA replication is initiated by introduction of a nick in the leading strand of the origin by the initiator protein, which in most cases binds covalently to the 5' end of the nick. In filamentous phage, however, such a covalent complex has not been detected. Using a suitable substrate and short reaction time, we show that filamentous phage initiator gpII forms a covalent complex with nicked DNA, which rapidly dissociates unless gpII is inactivated. A peptide-DNA complex was isolated from trypsin digest of the complex by ion-exchange column chromatography and gel filtration, and its peptide sequence was determined. The result indicated that gpII was linked to DNA by the tyrosine residue at position 197 from the N-terminus. The mutant protein in which this tyrosine was replaced by phenylalanine did not show any detectable activity to complement gene II amber mutant phage in vivo. In vitro, the mutant protein recognized the origin and bent DNA as well as the wild-type does, but failed to introduce a nick and to relax the superhelicity of cognate DNA.
机译:滚环型DNA复制是通过在起始点的前导蛋白中引入一个引子来引发的,该引子蛋白在大多数情况下与该酶的5'端共价结合。然而,在丝状噬菌体中,未检测到这种共价复合物。使用合适的底物和较短的反应时间,我们显示出丝状噬菌体引发剂gpII与带切口的DNA形成了共价复合物,除非gpII被灭活,否则其会迅速解离。通过离子交换柱色谱法和凝胶过滤从胰蛋白酶消化物中分离出肽-DNA复合物,并确定其肽序列。结果表明,gpII通过N末端第197位的酪氨酸残基与DNA连接。该酪氨酸被苯丙氨酸替代的突变蛋白在体内没有表现出可检测到的与基因II琥珀突变噬菌体互补的活性。在体外,突变蛋白与野生型一样识别出起源和弯曲的DNA,但未能引入缺口并放松同源DNA的超螺旋性。

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